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发表学术论文清单

发布时间:2024-07-01 03:52:24

发表学术论文清单

这取决于评审程序。一般来说,博士论文盲评需要作者提供论文的完整版本,包括论文的正文、图表、参考文献等。博士论文盲评是指将论文的作者与审稿人隔离开来,让审稿人在不知道作者身份的情况下审阅论文的过程。在博士论文盲评中,审稿人只能通过论文的内容来评估论文的质量,而不能受到作者的影响。对于博士论文盲评,是否需要带成果清单取决于评审程序的具体要求。一般来说,博士论文盲评需要作者提供论文的完整版本,包括论文的正文、图表、参考文献等。这些内容将用于审稿人评估论文的质量。因此,如果评审程序要求包含成果清单,那么作者应该将成果清单作为论文的一部分提交。不过,需要注意的是,在博士论文盲评的过程中,审稿人不会对论文的成果进行评估。审稿人只会评估论文的贡献和创新点,而不会对成果清单进行评判。因此,在博士论文盲评中,成果清单只是作为论文的一部分提供给审稿人参考,不会对论文的评审结果产生影响。

博士毕业论文参考文献格式

在书写论文的时候,大家知道参考文献怎么书写吗?以下是我精心准备的博士毕业论文参考文献格式,大家可以参考以下内容哦!

论文参考文献的格式要求

论文的参考文献是论文写作过程中参考过的文献著作,是对某一著作或论文的整体的参考或借鉴。参考文献要放在论文正文之后,不得放在各章之后。参考文献只列出作者直接阅读过、在正文中被引用过的文献资料。

参考文献的要求:

1.在正文写作完毕后,空两行(宋体小四号),居中书写“参考文献”四个字;“参考文献”使用宋体四号加粗,前后两个字之间不空格。“参考文献”书写完毕后空一行(宋体小四号)再书写参考文献的具体内容。参考文献按照其在正文中出现的先后以阿拉伯数字连续编码,参考文献的序号左顶格书写,并用数字加中括号表示,如[1],[2],[3],[4],[5]…,每一参考文献条目的最后均以英文句号“.”结束。

2.参考文献只列出作者已直接阅读、在撰写论文过程中主要参考过的文献资料,所列参考文献应按论文参考的先后顺序排列。参考文献与正文连续编排页码。参考文献不少于6篇。

3.参考文献格式

参考文献类型及文献类型,根据GB3469-83《文献类型与文献载体代码》规定,以单字母方式标识:

(1)专著:〔序号]作者.专著名[M].出版地:出版社,出版年.

(2)期刊中析出的文献:〔序号]作者.题(篇)名[J].刊名,出版年 (期号).

(3)论文集:〔序号]作者. 题(篇)名[C]. 出版地:出版社,出版年.

(4)学位论文:〔序号]作者.题(篇)名[D].授学位地:授学位单位,授学位年.

(5)专利文献:〔序号]专利申请者.专利题名[P].专利国别:专利号,出版日期.

(6)报纸文章:〔序号]作者.题(篇)名[N].报纸名,出版日期.

(7)电子文档:〔序号]作者.题(篇)名〔文献类型/载体类型〕.网址,发表日期.

关于参考文献的未尽事项可参见国家标准《文后参考文献著录规则》(GB/T7714-2005)。

4.常用参考文献范例

[1]李松庆,王炜.第三方物流的实证分析[M].北京:中国物资出版社,2005.

[2]祁之杰.我国物流资源优化配置问题探讨[J].管理现代化,2004(1).

[3]刘国钧,陈绍业,王凤翥. 图书馆目录[M]. 北京:高等教育出版社,1957.15-18.

[4]辛希孟. 信息技术和信息服务国际研讨会论文集:A集[C]. 北京:中国社会科学出版社,1994.

[5]张筑生. 微分半动力系统的不变集[D]. 北京:北京大学数学系数学研究所,1983.

[6]冯西桥. 核反应堆压力管道和压力容器的`LBB分析[R]. 北京:清华大学核能技术设计研究院,1997.

[7] Gill,R. Mastering English Literature[M] . London: Macmillan,1985. (责任编辑:admin)

【拓展阅读】

一、对博士毕业论文的基本要求

根据《中华人民共和国学位条例暂行实施办法》第十三条的规定,博士学位论文应能表明作者确已在本门学科上掌握了坚实宽广的基础理论和系统深入的专门知识,具有独立从事科学研究工作的能力,并在科学或专门技术工作上做出了创造性的成果。博士学位论文工作是攻读博士学位研究生培养的最重要环节,其工作时间一般应不少于2学年。博士生入学后在导师指导下明确科研方向,收集资料,阅读文献,进行调查研究,确定研究课题。一般在第二至第三学期通过开题报告并制定论文工作计划。博士生应根据论文工作计划分阶段在教研室、学术会议上报告科研和论文工作的进展情况。论文正文一般应不少于5万字。博士生用于论文研究和撰写学位论文的时间一般应不得少于2年。

特别应注意,学位论文应是本人的研究成果,在导师指导下独立完成,不得抄袭或剽窃他人成果。论文应反映作者较好地掌握了本学科、专业的研究方法和技能,学术观点必须言之有理、持之有据,论文内容应层次分明,数据可靠,文字简炼,推理严谨,立论正确。

二、对学位论文的格式要求

(一)编写要求

硕士、博士学位论文一般应由以下全部或某几部分组成,依次为:封面、中文摘要、英文摘要 、目录、符号说明、正文、参考文献、附录、附图表、致谢、攻读学位期间发表的学术论文目录。

具体要求如下:

1、封面

采用研究生院规定的统一封面,封面上填写论文题目、作者姓名、导师姓名、学科(专业) 、论文完成时间。上述内容也应在扉页上填写清楚。

2、论文摘要

学位论文的中文摘要应以最简洁的语言介绍论文的概要、作者的突出论点、新见解或创造性成果。硕士学位论文中文摘要一般应在500字左右,博士学位论文中文摘要一般在1500字左右。英文摘要(Abstract)内容应与中文摘要基本相对应,要语句通顺,语法正确,能正确概括文章的内容。

3、目录

目录应将文内的章节标题依次排列,标题应该简明扼要。

4、正文

正文是学位论文的主体和核心部分,它是将学习、研究和调查过程中筛选、观察和测试所获得的材料,经过加工整理和分析研究,由材料而形成论点。不同学科、专业有着不同的写作内容,但作为一般要求,论据、论点应力求准确、完备、清晰、通顺,实事求是,客观真切,简短精炼,合乎逻辑。其文体的格局和行文方式,研究生可根据自己研究课题的表达需要,灵活掌握。

绪论或引言是学位论文主体部分的开端,主要说明研究工作的缘起、沿革、目的、涉及范围 、国内外研究现状、相关领域的前人研究成果和知识空白、理论分析的依据、研究设想、研究方法和实际设计的概述,以及文中拟解决的问题、理论意义和实用价值等,应言简意赅,不要与摘要雷同或成为摘要的解释,也不是提要。

结论是学位论文最终和总体的结论,是整篇论文的归宿,应明确、精炼、完整、准确。要着重阐述作者研究的创造性成果、新见解、新发现和新发展,及其在本研究领域中的地位、作用、价值和意义,还可进一步提出需要讨论的问题和建议。学位论文中的计量单位、制图、制表、公式规范、缩略词和符号必须遵循国家规定的标准,如无标准可循,应采用本学科或专业有关权威性机构或学术团体所公布的规定。如不得已必需引用某些未公知公用的、不易为同行读者所理解的或系作者自行拟定的符合、记号、缩略词等,均应一一在第一次出现时加以说明,给以明确的定义。

5、参考文献

参考文献应按文中引用的顺序列出,可以分列在各章末尾,也可以列在正文的末尾。

本着以严谨求实的科学态度撰写论文,凡学位论文中有引用他人成果之处,均应详细列出有关文献的名称、作者、年份、出版单位等。具体格式按科技应用文写作的标准要求。

6、附录

主要列入正文内过分冗长的公式推导,供查读方便所需的辅助性数学工具或表格,重复性数据图表,论文使用的缩写,程序全文及说明等。

7、致谢

对给予各类资助、指导和协助完成研究工作以及提供各种对论文工作有利条件的单位及个人 表示感谢。致谢应实事求是,切忌浮夸与庸俗之词。

8、攻读学位期间发表的学术论文目录

按学术论文发表的时间顺序,列齐本人在攻读学位期间发表或已录用的学术论文清单(发表刊物名称、卷册号、页码、年月及论文署名、作者排序)。

(二)打印

按照有关规定,凡授予中华人民共和国学位者,学位论文必须用中文撰写,同时一律用A4标准纸打印输出,一般应有篇眉,以力求整洁、清晰、美观。

(三)装订

学位论文撰写完成后,用研究生院统一封面线装订成册。所需份数由研究生本人及导师掌握。

近五年作为通讯作者,共发表了研究论文200余篇,其中被SCI收录180余篇,主要发表在国际著名的Adv. Funct. Mater.、Chem: Eur.J.、Chem. Commun.、J. Mater. Chem.、 J. Phys. Chem. B、J. Phys. Chem. C、J. Comput. Chem.、Inorg. Chem.、Appl. Catal. B、Nanotechnology、J. Phys.: Condensed Matter等学术期刊上,影响因子在3.0以上的论文有50余篇,其中影响因子在5.0以上8篇。成果被SCI收录期刊正面引用1400余次。出版专著两部,美国科学出版社邀请为纳米科学技术大百科全书撰写了完整的一章。申请发明专利14项。已发表和已录用的主要论文清单如下(以下均为SCI期刊收录论文,*代表通讯联系人)·Pan Qing-Jiang,Guo Yuan-Ru,Li Li,Fu Hong-Gang*,and Zhang Hong-Xing “Structures,Spectroscopic Properties and Redox Potentials of Quaterpyridyl Ru(Ⅱ) Photosensitizer and its Derivatives for Solar Energy Cell: A Density Functional Study” Physical Chemistry Chemical Physics 2011,DOI:10.1039/C1CP00030F.·Gao Xiao-Qin,Pan Qing-Jiang,Li Li,Guo Yuan-Ru,Zhang Hong-Xing,Fu Hong-Gang* “Structures and Spectroscopic Properties of Ruthenium Phenanthroline Solar-Cell Sensitizers: A Computational Study” Chemical Physics Letters,2011,506,146-151.·Zhou W,Sun FF,Pan K,Tian GH,Fu HG*. Well-ordered large-pore mesoporous anatase TiO2 with remarkably high thermal stability and improved crystallinity: Preparation,characterization and photocatalytic performance. Advanced Functional Materials,2011,21,1922-1930..·Jiang Baojiang,Tian CG,Fu Honggang*,et al. In-Situ Growth of TiO2 in Interlayers of Expanded Graphite for the Fabrication of TiO2-Graphene with Enhanced Photocatalytic Activity. Chemistry-A European Journal,2011,Accepted,chem.201100250.· Li Sun,Chungui Tian,Lei Wang,Jinlong Zou,Guang Mu,Honggang Fu*,Magnetically Separable Porous Graphitic Carbon with Large Surface Area as Excellent Adsorbents for Metal Ions and Dye. Journal of Materials Chemistry,2011,2011,21,7232-7239.· Zhao H,Yang J,Wang L,Tian CG,Jiang BJ,Fu HG*. Fabrication of palladium nanoparticles/graphene nanosheets hybrid via sacrifice of copper template and its application in catalytic oxidation of formic acid. Chemical Communications,2011,47,2014-2016.· Yang J,Tian CG,Wang L,Fu HG*. An effective strategy to small-sized and high-dispersed palladium nano particles supported on graphene with excellent performance for formic acid oxidation. Journal of Materials Chemistry,2011,21,3384-3390.· Tian GH,Chen YJ,Zhou W,Ren ZY,Tian CG,Fu HG*. Facile solvothermal synthesis of hierarchical flower-like Bi2MoO6 hollow spheres as high performance visible-light driven photocatalysts. Journal of Materials Chemistry,2011,21,887 – 892.· Hu ZF,Shen PK*,Fu HG*,et al. Oxygen Reduction Electrocatalysis Enhanced by Nanosized Cubic Vanadium Carbide. Electrochemistry Communications,2011,Accepted,ELECOM 3881.· Tian Guohui,Chen Yajie,Zhou Wei,Pan Kai,Huang Xu-ri and Fu Honggang *,3D hierarchical flower-like TiO2 nanostructure: morphology control and its photocatalytic property. CrstEngComm,2011,13,2994.· Dong Youzhen,Pan Kai,Zhou Wei,Pan Qingjiang,Xie Tengfeng,Wang Dejun,Fu Honggang*,Dye-sensitized solar cells based on TiO2-B nanobelt/TiO2 nanoparticle sandwich-type photoelectrodes with controllable nanobelt length. Dalton Transactions,2011,40,3808–3814.· Cai ZC,Tian CG,Wang L,Zhou W,Wang BL,Fu HG*. One-pot synthesis of silver particle aggregation as highly active SERS substrate. Journal of Raman Spectroscopy,2011,1,5-11.· Tian CG,Li W,Fu HG*,et al. Glucose-mediated solution-solid route for easy synthesis of Ag/ZnO particles with superior photocatalytic activity and photostability,Journal of Alloys and Compounds,2011,509,6935-6941.· Tian CG,Li W,Fu HG*,et al. Controllable Fabrication of Various ZnO Micro/nanostructures from a Wire-like Zn-EG-AC Precursor via a Facile Solution-based Route,Materials Research Bulletin,2011,MRB5116.· Zhao H,Fu HG,Tian CG,et al.Facile shape-controlled synthesis of palladium nanostructures on copper for promising Surface-enhanced Raman scattering,MATERIALS LETTERS,2010,64,2255-2257· Zhao H,Fu HG,Tian CG,et al. Fabrication of silver nanoparticles/single-walled carbon nanotubes composite for surface-enhanced Raman scattering,JOURNAL OF COLLOID AND INTERFACE SCIENCE,2010,351,343-347.· Jiang BJ,Tian CG,Fu HG*,et al. Facile Fabrication of High Quality Graphene from Expandable Graphite: Simultaneous Exfoliation and Reduction. Chemical Communication. 2010,46,4920 - 4922.· Feng SS,Ren ZY,Fu HG*,et al. Synthesis and application of hollow magnetic graphitic carbon microspheres with/without TiO2 nanoparticle layer on the surface. Chemical Communication. 2010,46,6276-6278.· Liu Y,Ren ZY,Fu HG*,et al. Synthesis and applications of graphite carbon sphere with uniformly distributed magnetic Fe3O4 nanoparticles (MGCSs) and MGCS@Ag,MGCS@TiO2. Journal of Material Chemistry 2010,20,4802- 4808.· Wang L,Tian CG,Fu HG*,et al. Mass production of graphene via an in situ self-generating template route and its promoted activity as electrocatalytic support for methanol electroxidization. Journal of Physical Chemistry C 2010,114 (19),8727–8733.· Qu Y,Zhou W,Fu HG*,et al. Hierarchical anatase TiO2 porous nanopillars with high crystallinity and controlled length: An effective candidate for dye-sensitized solar-cells. Physical Chemistry Chemical Physics 2010,12,9205 - 9212.· Wang BL,Tian CG,Fu HG,et al. Chitosan: a green carbon source for the synthesis of graphitic nanocarbon,tungsten carbide and graphitic nanocarbon/tungsten carbide composites. Nanotechnology 21 (2010) 025606 (9pp).· Li YJ,LV RJ,Fu HG*,et al. Fabrication and evaluation of chiral monolithic column modified by β-cyclodextrin derivatives. Talanta 80 (2010) 1378–1382· Zhou W,Pan K,Fu HG*,et al. Photodegradation of organic contamination in wastewaters by bondingTiO2/single-walled carbon nanotube composites with enhanced photocatalytic activity. Chemosphere 81 (2010) 555–561.· Guohui Tian,Chen Yajie,Pan Kai,Fu Honggang*,Efficient visible light-induced degradation of phenol on N-doped anatase TiO2 with large surface area and high crystallinity. Applied Surface Science 2010,256,3740-3745.· Tian CG,Li W,Fu HG*,et al. One-pot Synthesis of the Ag Nanoparticles modified ZnO Microspheres in Ethylene Glycol Medium and Their Enhanced Photocatalytic Performance. Journal of Solid State Chemistry,2010,183,2720-2725.· Zhou W,Pan K,Fu HG*,et al. The sandwich structure electrodes based on wire-likeTiO2–β-cyclodextrin–SWCNT composite for dye-sensitized solar cells. Journal of Photochemistry and Photobiology A: Chemistry 2009,207,306–310.· Tian XQ,Wan LJ,Fu HG*,et al. Facile synthesis of mesoporous ZnAl2O4 thin films through the evaporation-induced self-assembly method. Journal of Alloys and Compounds 2009,488,320–324.· Wang RH,Tian CG,Fu HG*,et al. In situ simultaneous synthesis of WC/graphitic carbon nanocomposite as a highly efficient catalyst support for DMFCw. Chemical Communication 2009,3104-3106.· Pan QJ,Fu HG*,Zhang HX*,et al. Theoretical Studies on Metal−Metal Interaction,Excited States,and Spectroscopic Properties of Binuclear Au−Au,Au−Rh,and Rh−Rh Complexes with Diphosphine Ligands: Buildup of Complexity from Monomers to Dimers. Inorganic Chemistry,2009,48,2844–2854.· Zhou W,Pan K,Fu HG*,et al. Solar-induced Self-assembly of TiO2-β-cyclodextrin-MWCNT Composite Wires. Physical Chemistry Chemical Physics 2009,11,1713-1718.· Kang CH,Jing LQ*,Fu HG*,et al. Mesoporous SiO2-Modified Nanocrystalline TiO2 with High Anatase Thermal Stability and Large Surface Area as Efficient Photocatalyst. Journal of Physical Chemistry C 2009,113,1006–1013.· Wang BL,Tian CG,Fu HG*,et al. A simple and large-scale strategy for the preparation of Ag nanoparticles supported on resin-derived carbon and their antibacterial properties. Nanotechnology 2009,20,025603(7pp)· Tian GH,Fu HG*,Jing LQ,et al. Synthesis and photocatalytic activity of stable nanocrystalline TiO2 with high crystallinity and large surface area. Journal of Hazardous Materials 2009,161,1122-1130.· Zhang GX,Yu HT*,Fu HG,et al. First-principles calculations of the stability and electronic properties of the PbTiO3 (110) polar surface. Journal of Computational Chemistry 2009,30,1785-1798.· Tian GH,Pan K,Fu HG*,et al. Enhanced photocatalytic activity of S-doped TiO2-ZrO2 nanoparticles under visible-light irradiation. Journal of Hazardous Materials 2009,166,939-944.· Pan K,Dong YZ,Fu HG*,et al. TiO2-B narrow nanobelt/TiO2 nanoparticle composite photoelectrode for dye-sensitized solar cells. Electrochimica Acta 2009,54,7350-7356.· Kan K,Fu HG,Shi KY*,et al. Amidation of single-walled carbon nanotubes by a hydrothermal process for the electrooxidation of nitric oxide. Nanotechnology 2009,20,185502 (7pp).· Wang L,Tian CG,Fu HG*,et al. Controllable Synthesis of Graphitic Carbon Nanostructures from Ion-Exchange Resin-Iron Complex via Solid-State Pyrolysis Process. Chemical Communication 2008,5411-5413.· Zhou W,Fu HG*,Pan K,et al. Mesoporous TiO2/α-Fe2O3: Bifunctional Composites for Effective Elimination of Arsenite Contamination through Simultaneous Photocatalytic Oxidation and Adsorption. Journal of Physical Chemistry C 2008,112,19584-19589.· Liu KS,Fu HG*,Xie Y,et al. Assembly of β-Cyclodextrins Acting as Molecular Bricks onto the Multiwall Carbon Nanotubes.Journal of Physical Chemistry C 2008,112,951-957.· Tian GH,Fu HG*,Jing LQ,et al. Preparation and Characterization of Stable Biphase TiO2 Photocatalyst with High Crystallinity,Large Surface Area and Enhanced Photoactivity. Journal of Physical Chemistry C 2008,112,3083-3089.· Zhou W,Liu KS,Fu HG*,et al. Multi-modal mesoporous TiO2–ZrO2 composites with high photocatalytic activity and hydrophilicity. Nanotechnology 2008,19,035610(7pp).· Pan QJ,Zhou X,Fu HG*,et al,“Isovalent Gold(I),-(Ⅱ),and -(Ⅲ) and Mixed-Valent Gold(I)/Gold(Ⅲ) Phosphorus Ylide Complexes. Combined ab Initio and Density Functional Study of Electronic Structures and Spectroscopic Properties” Organometallics 2008,27,2474–2482.· Wan LJ,Fu HG*,Shi KY,et al. Facile synthesis of ordered nanocrystalline alumina thin films with tunable mesopore structures. Microporous and Mesoporous Materials 2008,115(3),301-307.· Pan QJ,Zhou X,Fu HG*,et al. A theoretical probe on the ground- and excited-state properties of heterobinuclear Au–Pt complex with phosphine ligands. Comparison with analogous homobinuclear Au–Au and Pt–Pt complexes. Chemical Physics Letters 2008,453,7-12.· Jing LQ*,Li SD,Fu HG*,et al. Investigation on the electron transfer between anatase and rutile in nano-sized TiO2 by means of surface photovoltage technique and its effects on the photocatalytic activity. Solar Energy Materials & Solar Cells 2008,92,1030– 1036.· Wan LJ,Fu HG*,Shi KY,et al. Facile synthesis of iron oxide with wormlike morphology and their application in water treatment. Journal of Solid State Chemistry 2008,181(4),735-740.· Chi YJ,Fu HG*,Qi LH,et al. Preparation and photoelectric performance of ITO/TiO2/CdS composite thin films. Journal of Photochemistry and Photobiology A: Chemistry 2008,195(2-3),357-363.· Xie Y,Yu HT,Fu HG*,et al. Lattice dynamics investigation on different transition behaviors of cubic BaTiO3 and SrTiO3 by first-principles calculatoins. J. Phys.: Condens. Matter,2008,20,215215 (8pp)· Wan LJ,Fu HG*,Shi KY,et al. Simple synthesis of mesoporous alumina thin films.Material Letters 2008,62(10-11),1525-1527.· Song S,Jing LQ*,Fu HG*,et al. Superhydrophilic anatase TiO2 film with the micro- and nanometer-scale hierarchical surface structure. Materials Letters 2008,62,3503–3505.· Zhu YJ,Yuan FL*,Fu HG,et al. Direct NO decomposition over La2-xBaxNiO4 catalysts containing BaCO3 phase. Appl. Catal B-Environ 2008,82,255-263.· Li MX,Zhang HX*,Fu HG,et al. Theoretical Studies of Electronic Structuresand Spectroscopic Properties of Ru Complexes. Inorg. Chem 2008 47(7),2312-2324.· Xie Y,Yu HT,Fu HG*,A First-Principles Investigation of Stability and Structural Properties of the BaTiO3 (110) Polar Surface. Journal of Physical Chemistry C,2007,111,6343-6349.· Kan W,Yu HT,Fu HG*,et al. Theoretical investigation on the protonation reactions and products of the stable [N,C,C,S] isomers,Journal of Computational Chemistry,2007,28,2472-2482.· Zhao YL,Yu HT*,Fu HG,et al. Combined DFT,QCISD(T),and G2 mechanism investigation for the reactions of carbon monophosphide CP with unsaturated hydrocarbons allene CH2CCH2 and methylacetylene CH3CCH,Journal of Computational Chemistry,2007,28,1221-1233.· Pan QJ,Zhang HX*,Fu HG,et al. Electronic Structures and Spectroscopic Properties of Mono- and Binuclear d8 Complexes: a Theoretical Exploration on Promising Phosphorescent Materials. Journal of Physical Chemistry A,2007,111(2); 287-294.· Pan QJ,Zhou X,Fu HG*,et al. Theoretical studies on spectroscopic properties of binuclear palladium(Ⅱ) halide with phosphine ligands Journal of Photochemistry and Photobiology A: Chemistry,2007,188(2-3),287-292.· Xie Y,Fu HG*,Yu HT,et al. A first-principles investigation into the ferroelectric and antiferrodistortive instabilities of cubic SrTiO3,Journal of Physics: Condensed Matter,2007,19,506213(9pp)· Pan QJ,Zhou X,Fu HG*,et alStructures and electronic spectra of [Pt2(P2O5H2)4X2]4– (X = Cl,Br and I): a comparative study of ab initio and density functional theory Inorganic Chemistry Communications 2007,10,183–186.· Li SD,Jing LQ,Fu HG*,et al. Photoinduced charge property of nanosized perovskite-type LaFeO3 and its relationships with photocatalytic activity under visible irradiation. Materials Research Bulletin 2007,42,203-212.· Yang PP,Fu HG,Lin J*,et al. MCM-41 functionalized with YVO4: Eu3+: a novel drug delivery system. Nanotechnology 2007,18,235703(6pp).· Yang PP,Fu HG,Lin J*,et al. Luminescence functionalization of SBA-15 by YVO4: Eu3+ as a novel drug delivery system. Inorg. Chem. 2007,46,3202-3211.· Jing LQ,Fu HG*,Wang BQ,et al. Effects of Sn dopant on the photoinduced charge property and photocatalytic activity of TiO2 nanoparticles. Applied Catalysis B,2006,62,282-291.· Jing LQ,Xin BF,Fu HG*,et al. Effects of Surface Oxygen Vacancies on Photophysical and Photochemical Processes of Zn-Doped TiO2 Nanoparticles and Their Relationships. Journal of Physical Chemistry B2006,110,17860-17865.· Pan QJ,Fu HG*,Yu HT,et al. A Theoretical Insight Into Electronic Structures and Spectroscopic Properties of [Pt2(pop)4]4–,[Pt2(pcp)4]4– and Related Derivatives (pop = P2O5H22– and pcp = P2O4CH42–) Inorganic Chemistry,2006,45(21),8729–8735.· Liu KS,Zhou W,Fu HG*,et al. Influence of calcination temperatures on the photocatalytic activity and photo-induced hydrophilicity of wormhole-like mesoporous TiO2. Nanotechnology 2006,17,1363-1369.· Liu KS,Fu HG*,Shi KY,et al. Hydrophilicity and formation mechanism of large-pore mesoporous TiO2 thin films with tunable pore diameters. Nanotechnology 2006,17,3641-3648.· Pan QJ,Zhang HX*,Fu HG,et al “Theoretical Studies on Metal–Metal Interaction and Intrinsic 1,3[σ*(d)σ(s/p)] Excited States of Binuclear d10 Complexes with Bridging Phosphine Ligands” European Journal of Inorganic Chemistry 2006 (5),1050-1059.· Jing LQ,Wang DJ,Fu HG*,et al. Effects of noble metal modification on surface oxygen composition,charge separation and photocatalytic activity of ZnO nanoparticles. Journal of Molecular Catalysis A 2006,244,193-200.· Pan QJ,Fu HG*,Yu HT,et al Substituent effect on the structure and luminescence of binuclear Au(I) complexes: An ab initio study. Chemical Physics Letters 2006,426(4-6),257-262.· Jing LQ,Qu YC,Fu HG*,et al. Review of photoluminescence performance of nano-sized semiconductor materials and its relationships with photocatalytic activity. Solar Energy Materials & Solar Cell 2006,90,1773-1787.· Pan QJ,Fu HG*,Yu HT,et al Spectroscopic Properties of Mono- and Binuclear Platinum(Ⅱ) Alkynyl Complexes with Phosphine Ligands: A Theoretical StudyInorganica Chimica Acta 2006,359(10),3306–3314.· Wang BQ,Jing LQ,Fu HG*,et al. Enhancement of the photocatalytic activity of TiO2 nanoparticles by surface-capping DBS groups. Applied Surface Science 2006,252,2817-2825.· Liu KS,Zhang ML,Fu HG*,et al. Uniform TiO2 thin films with anatase nanocrystallites synthesized through evaporation-induced assembly. Journal of Non-Crystalline Solids 2006,352,2284–2287.· Liu KS,Fu HG*,Shi KY,et al. Preparation of large-pore mesoporous nanocrystalline TiO2 thin films with tailored pore diameters. Journal of Physical Chemistry B 2005,109 (40),18719-18722.· Shi KY,Chi YJ,Fu HG*,et al. Controlled growth of mesostructured crystalline iron oxide nanowires and Fe-filled carbon nanotube arrays templated by mesoporous silica SBA-16 film. Journal of Physical Chemistry B2005,109 (7),2546-2551.· Xin BF,Jing LQ,Fu HG*,et al. Effects of simultaneously doped and deposited Ag on the photocatalytic activity and surface states of TiO2. Journal of Physical Chemistry B2005,109,2805-2809.· Liu KS,Zhang ML,Fu HG*,et al. Preparation,characterization,and photo-induced hydrophilicity of nanocrystalline anatase thin films synthesized through evaporation-induced assembly. Nanotechnology 2005,16,3006-3011.· Xin BF,Ren ZY,Fu HG*,et al. Photocatalytic activity and interfacial carrier transfer of Ag–TiO2 nanoparticle films. Applied Surface Science 2005,252,2050–2055.· Liu KS,Zhang ML,Fu HG*,et al. Large pore mesoporous nanocrystalline titania thin films synthesized through evaporation-induced self-assembly. Materials Letters 2005,59,3308 -3310.

发表论文清单

填写购物清单时必须把每种物品的品名、数量、单位、单价、金额写清楚,才算规范的写法,俗称范本。

1、L. Yang, X.T. Zu, H.Y. Xiao, et al. Atomistic simulation of helium-defect interaction in alpha-iron. Appl. Phys. Lett., 2006, 88: 0919152、杨莉, 祖小涛, 肖海燕, 等. a-铁中位移级联过程中缺陷的生成和He-空位复合物的形成. 物理学报, 2005, 52: 48573、L. Yang, X.T. Zu, H.Y. Xiao, et al. Temperature effects on He bubbles production due to cascades in a-iron. Mate. Sci. and Eng. A,2006, 427: 3434、L. Yang, X.T. Zu, H.Y. Xiao, et al. Defect production and formation of helium-vacancy clusters due to cascades in a-iron. Physica B, 2007, 391: 1795、L. Yang, X.T. Zu, H.Y. Xiao, et al. Stability of helium clusters during displacement cascade. Nucl. Instr. and Meth. in Phys. Res. B., 2007, 255: 636、H.Y. Xiao, X.T. Zu, Y.F. Zhang, L. Yang. First-principles study of the adsorption of cesium on Si(001)(2´1) surface. J. Chem. Phys., 2005, 122:1747047、杨莉, 刘汉奎. 用超跃迁阵模型分析金等离子体光谱. 原子与分子物理学报,2004, 21(1): 1228、 刘汉奎, 杨莉, 章献民. 偏振度方法监测和控制偏振模色散的失效概率(英文). 光电子.激光, 2004, 15(7): 8239、 程新路, 杨莉, 张红, 杨向东. Monte Carlo simulation of opacities of hot and dense Au plasma in the unresolved transition array approximation. Chinese Physics Letters, 2002, 19(7): 93110、 程新路, 杨莉, 杨向东. 用蒙特-卡罗模型模拟金等离子体光谱. 强激光与粒子束,2000, 12(2): 18511、 杨莉, 杜仁华, 刘汉奎, 陶才德. 金等离子辐射不透明度的计算. 西华师范大学学报(自然科学版),2006, 27(1):3812、 刘汉奎, 杨莉. 光纤偏振模色散补偿的监测信号和反馈控制算法分析. 西华师范大学学报(自然科学版), 2005, 24(3):15213、 刘汉奎, 陶才德, 杨莉. 偏振模色散对光副载波复用系统的影响及其抑制. 绵阳师范学院学报,2004, 23(2):4514、 杨莉, 刘汉奎, 罗志全. 用L-S藕合的蒙特-卡罗模型模拟复杂光谱. 西华师范大学学报(自然科学版), 2004 25(1):515、 孙庆强, 杨莉, 罗志全. 恒星环境下电荷屏蔽对基态b衰变的影响. 西华师范大学学报(自然科学版), 2004, 25(1):816、 刘汉奎, 杨莉, 戚淮兵. 偏振度方法跟踪偏振模色散性能的研究. 西华师范大学学报(自然科学版), 2004, 25(2):29117、 杨莉, 刘汉奎, 陶才德. 用简化超跃迁阵模型分析铪等离子体光谱. 贵州大学学报,2004, 21(3): 26418、 陶才德, 杨莉. 氢原子能级精细结构的微扰计算.西华师范大学学报(自然科学版), 2004, 25(4):45519、 杨莉, 刘汉奎. 中低Z元素等离子体辐射不透明度的计算. 西南民族大学学报(自然科学版),2003, 29(6): 74020、 杨莉. 用蒙特-卡罗模型模拟铪等离子体光谱. 四川师范学院学报(自然科学版),2002, 23(4): 34821、 杨莉, 刘汉奎, 谌家军, 杨向东, 程新路. 用平均原子模型计算Al等离子体的不透明度. 四川师范学院学报(自然科学版), 2001, 22(3): 244

论文发表清单

近五年作为通讯作者,共发表了研究论文200余篇,其中被SCI收录180余篇,主要发表在国际著名的Adv. Funct. Mater.、Chem: Eur.J.、Chem. Commun.、J. Mater. Chem.、 J. Phys. Chem. B、J. Phys. Chem. C、J. Comput. Chem.、Inorg. Chem.、Appl. Catal. B、Nanotechnology、J. Phys.: Condensed Matter等学术期刊上,影响因子在3.0以上的论文有50余篇,其中影响因子在5.0以上8篇。成果被SCI收录期刊正面引用1400余次。出版专著两部,美国科学出版社邀请为纳米科学技术大百科全书撰写了完整的一章。申请发明专利14项。已发表和已录用的主要论文清单如下(以下均为SCI期刊收录论文,*代表通讯联系人)·Pan Qing-Jiang,Guo Yuan-Ru,Li Li,Fu Hong-Gang*,and Zhang Hong-Xing “Structures,Spectroscopic Properties and Redox Potentials of Quaterpyridyl Ru(Ⅱ) Photosensitizer and its Derivatives for Solar Energy Cell: A Density Functional Study” Physical Chemistry Chemical Physics 2011,DOI:10.1039/C1CP00030F.·Gao Xiao-Qin,Pan Qing-Jiang,Li Li,Guo Yuan-Ru,Zhang Hong-Xing,Fu Hong-Gang* “Structures and Spectroscopic Properties of Ruthenium Phenanthroline Solar-Cell Sensitizers: A Computational Study” Chemical Physics Letters,2011,506,146-151.·Zhou W,Sun FF,Pan K,Tian GH,Fu HG*. Well-ordered large-pore mesoporous anatase TiO2 with remarkably high thermal stability and improved crystallinity: Preparation,characterization and photocatalytic performance. Advanced Functional Materials,2011,21,1922-1930..·Jiang Baojiang,Tian CG,Fu Honggang*,et al. In-Situ Growth of TiO2 in Interlayers of Expanded Graphite for the Fabrication of TiO2-Graphene with Enhanced Photocatalytic Activity. Chemistry-A European Journal,2011,Accepted,chem.201100250.· Li Sun,Chungui Tian,Lei Wang,Jinlong Zou,Guang Mu,Honggang Fu*,Magnetically Separable Porous Graphitic Carbon with Large Surface Area as Excellent Adsorbents for Metal Ions and Dye. Journal of Materials Chemistry,2011,2011,21,7232-7239.· Zhao H,Yang J,Wang L,Tian CG,Jiang BJ,Fu HG*. Fabrication of palladium nanoparticles/graphene nanosheets hybrid via sacrifice of copper template and its application in catalytic oxidation of formic acid. Chemical Communications,2011,47,2014-2016.· Yang J,Tian CG,Wang L,Fu HG*. An effective strategy to small-sized and high-dispersed palladium nano particles supported on graphene with excellent performance for formic acid oxidation. Journal of Materials Chemistry,2011,21,3384-3390.· Tian GH,Chen YJ,Zhou W,Ren ZY,Tian CG,Fu HG*. Facile solvothermal synthesis of hierarchical flower-like Bi2MoO6 hollow spheres as high performance visible-light driven photocatalysts. Journal of Materials Chemistry,2011,21,887 – 892.· Hu ZF,Shen PK*,Fu HG*,et al. Oxygen Reduction Electrocatalysis Enhanced by Nanosized Cubic Vanadium Carbide. Electrochemistry Communications,2011,Accepted,ELECOM 3881.· Tian Guohui,Chen Yajie,Zhou Wei,Pan Kai,Huang Xu-ri and Fu Honggang *,3D hierarchical flower-like TiO2 nanostructure: morphology control and its photocatalytic property. CrstEngComm,2011,13,2994.· Dong Youzhen,Pan Kai,Zhou Wei,Pan Qingjiang,Xie Tengfeng,Wang Dejun,Fu Honggang*,Dye-sensitized solar cells based on TiO2-B nanobelt/TiO2 nanoparticle sandwich-type photoelectrodes with controllable nanobelt length. Dalton Transactions,2011,40,3808–3814.· Cai ZC,Tian CG,Wang L,Zhou W,Wang BL,Fu HG*. One-pot synthesis of silver particle aggregation as highly active SERS substrate. Journal of Raman Spectroscopy,2011,1,5-11.· Tian CG,Li W,Fu HG*,et al. Glucose-mediated solution-solid route for easy synthesis of Ag/ZnO particles with superior photocatalytic activity and photostability,Journal of Alloys and Compounds,2011,509,6935-6941.· Tian CG,Li W,Fu HG*,et al. Controllable Fabrication of Various ZnO Micro/nanostructures from a Wire-like Zn-EG-AC Precursor via a Facile Solution-based Route,Materials Research Bulletin,2011,MRB5116.· Zhao H,Fu HG,Tian CG,et al.Facile shape-controlled synthesis of palladium nanostructures on copper for promising Surface-enhanced Raman scattering,MATERIALS LETTERS,2010,64,2255-2257· Zhao H,Fu HG,Tian CG,et al. Fabrication of silver nanoparticles/single-walled carbon nanotubes composite for surface-enhanced Raman scattering,JOURNAL OF COLLOID AND INTERFACE SCIENCE,2010,351,343-347.· Jiang BJ,Tian CG,Fu HG*,et al. Facile Fabrication of High Quality Graphene from Expandable Graphite: Simultaneous Exfoliation and Reduction. Chemical Communication. 2010,46,4920 - 4922.· Feng SS,Ren ZY,Fu HG*,et al. Synthesis and application of hollow magnetic graphitic carbon microspheres with/without TiO2 nanoparticle layer on the surface. Chemical Communication. 2010,46,6276-6278.· Liu Y,Ren ZY,Fu HG*,et al. Synthesis and applications of graphite carbon sphere with uniformly distributed magnetic Fe3O4 nanoparticles (MGCSs) and MGCS@Ag,MGCS@TiO2. Journal of Material Chemistry 2010,20,4802- 4808.· Wang L,Tian CG,Fu HG*,et al. Mass production of graphene via an in situ self-generating template route and its promoted activity as electrocatalytic support for methanol electroxidization. Journal of Physical Chemistry C 2010,114 (19),8727–8733.· Qu Y,Zhou W,Fu HG*,et al. Hierarchical anatase TiO2 porous nanopillars with high crystallinity and controlled length: An effective candidate for dye-sensitized solar-cells. Physical Chemistry Chemical Physics 2010,12,9205 - 9212.· Wang BL,Tian CG,Fu HG,et al. Chitosan: a green carbon source for the synthesis of graphitic nanocarbon,tungsten carbide and graphitic nanocarbon/tungsten carbide composites. Nanotechnology 21 (2010) 025606 (9pp).· Li YJ,LV RJ,Fu HG*,et al. Fabrication and evaluation of chiral monolithic column modified by β-cyclodextrin derivatives. Talanta 80 (2010) 1378–1382· Zhou W,Pan K,Fu HG*,et al. Photodegradation of organic contamination in wastewaters by bondingTiO2/single-walled carbon nanotube composites with enhanced photocatalytic activity. Chemosphere 81 (2010) 555–561.· Guohui Tian,Chen Yajie,Pan Kai,Fu Honggang*,Efficient visible light-induced degradation of phenol on N-doped anatase TiO2 with large surface area and high crystallinity. Applied Surface Science 2010,256,3740-3745.· Tian CG,Li W,Fu HG*,et al. One-pot Synthesis of the Ag Nanoparticles modified ZnO Microspheres in Ethylene Glycol Medium and Their Enhanced Photocatalytic Performance. Journal of Solid State Chemistry,2010,183,2720-2725.· Zhou W,Pan K,Fu HG*,et al. The sandwich structure electrodes based on wire-likeTiO2–β-cyclodextrin–SWCNT composite for dye-sensitized solar cells. Journal of Photochemistry and Photobiology A: Chemistry 2009,207,306–310.· Tian XQ,Wan LJ,Fu HG*,et al. Facile synthesis of mesoporous ZnAl2O4 thin films through the evaporation-induced self-assembly method. Journal of Alloys and Compounds 2009,488,320–324.· Wang RH,Tian CG,Fu HG*,et al. In situ simultaneous synthesis of WC/graphitic carbon nanocomposite as a highly efficient catalyst support for DMFCw. Chemical Communication 2009,3104-3106.· Pan QJ,Fu HG*,Zhang HX*,et al. Theoretical Studies on Metal−Metal Interaction,Excited States,and Spectroscopic Properties of Binuclear Au−Au,Au−Rh,and Rh−Rh Complexes with Diphosphine Ligands: Buildup of Complexity from Monomers to Dimers. Inorganic Chemistry,2009,48,2844–2854.· Zhou W,Pan K,Fu HG*,et al. Solar-induced Self-assembly of TiO2-β-cyclodextrin-MWCNT Composite Wires. Physical Chemistry Chemical Physics 2009,11,1713-1718.· Kang CH,Jing LQ*,Fu HG*,et al. Mesoporous SiO2-Modified Nanocrystalline TiO2 with High Anatase Thermal Stability and Large Surface Area as Efficient Photocatalyst. Journal of Physical Chemistry C 2009,113,1006–1013.· Wang BL,Tian CG,Fu HG*,et al. A simple and large-scale strategy for the preparation of Ag nanoparticles supported on resin-derived carbon and their antibacterial properties. Nanotechnology 2009,20,025603(7pp)· Tian GH,Fu HG*,Jing LQ,et al. Synthesis and photocatalytic activity of stable nanocrystalline TiO2 with high crystallinity and large surface area. Journal of Hazardous Materials 2009,161,1122-1130.· Zhang GX,Yu HT*,Fu HG,et al. First-principles calculations of the stability and electronic properties of the PbTiO3 (110) polar surface. Journal of Computational Chemistry 2009,30,1785-1798.· Tian GH,Pan K,Fu HG*,et al. Enhanced photocatalytic activity of S-doped TiO2-ZrO2 nanoparticles under visible-light irradiation. Journal of Hazardous Materials 2009,166,939-944.· Pan K,Dong YZ,Fu HG*,et al. TiO2-B narrow nanobelt/TiO2 nanoparticle composite photoelectrode for dye-sensitized solar cells. Electrochimica Acta 2009,54,7350-7356.· Kan K,Fu HG,Shi KY*,et al. Amidation of single-walled carbon nanotubes by a hydrothermal process for the electrooxidation of nitric oxide. Nanotechnology 2009,20,185502 (7pp).· Wang L,Tian CG,Fu HG*,et al. Controllable Synthesis of Graphitic Carbon Nanostructures from Ion-Exchange Resin-Iron Complex via Solid-State Pyrolysis Process. Chemical Communication 2008,5411-5413.· Zhou W,Fu HG*,Pan K,et al. Mesoporous TiO2/α-Fe2O3: Bifunctional Composites for Effective Elimination of Arsenite Contamination through Simultaneous Photocatalytic Oxidation and Adsorption. Journal of Physical Chemistry C 2008,112,19584-19589.· Liu KS,Fu HG*,Xie Y,et al. Assembly of β-Cyclodextrins Acting as Molecular Bricks onto the Multiwall Carbon Nanotubes.Journal of Physical Chemistry C 2008,112,951-957.· Tian GH,Fu HG*,Jing LQ,et al. Preparation and Characterization of Stable Biphase TiO2 Photocatalyst with High Crystallinity,Large Surface Area and Enhanced Photoactivity. Journal of Physical Chemistry C 2008,112,3083-3089.· Zhou W,Liu KS,Fu HG*,et al. Multi-modal mesoporous TiO2–ZrO2 composites with high photocatalytic activity and hydrophilicity. Nanotechnology 2008,19,035610(7pp).· Pan QJ,Zhou X,Fu HG*,et al,“Isovalent Gold(I),-(Ⅱ),and -(Ⅲ) and Mixed-Valent Gold(I)/Gold(Ⅲ) Phosphorus Ylide Complexes. Combined ab Initio and Density Functional Study of Electronic Structures and Spectroscopic Properties” Organometallics 2008,27,2474–2482.· Wan LJ,Fu HG*,Shi KY,et al. Facile synthesis of ordered nanocrystalline alumina thin films with tunable mesopore structures. Microporous and Mesoporous Materials 2008,115(3),301-307.· Pan QJ,Zhou X,Fu HG*,et al. A theoretical probe on the ground- and excited-state properties of heterobinuclear Au–Pt complex with phosphine ligands. Comparison with analogous homobinuclear Au–Au and Pt–Pt complexes. Chemical Physics Letters 2008,453,7-12.· Jing LQ*,Li SD,Fu HG*,et al. Investigation on the electron transfer between anatase and rutile in nano-sized TiO2 by means of surface photovoltage technique and its effects on the photocatalytic activity. Solar Energy Materials & Solar Cells 2008,92,1030– 1036.· Wan LJ,Fu HG*,Shi KY,et al. Facile synthesis of iron oxide with wormlike morphology and their application in water treatment. Journal of Solid State Chemistry 2008,181(4),735-740.· Chi YJ,Fu HG*,Qi LH,et al. Preparation and photoelectric performance of ITO/TiO2/CdS composite thin films. Journal of Photochemistry and Photobiology A: Chemistry 2008,195(2-3),357-363.· Xie Y,Yu HT,Fu HG*,et al. Lattice dynamics investigation on different transition behaviors of cubic BaTiO3 and SrTiO3 by first-principles calculatoins. J. Phys.: Condens. Matter,2008,20,215215 (8pp)· Wan LJ,Fu HG*,Shi KY,et al. Simple synthesis of mesoporous alumina thin films.Material Letters 2008,62(10-11),1525-1527.· Song S,Jing LQ*,Fu HG*,et al. Superhydrophilic anatase TiO2 film with the micro- and nanometer-scale hierarchical surface structure. Materials Letters 2008,62,3503–3505.· Zhu YJ,Yuan FL*,Fu HG,et al. Direct NO decomposition over La2-xBaxNiO4 catalysts containing BaCO3 phase. Appl. Catal B-Environ 2008,82,255-263.· Li MX,Zhang HX*,Fu HG,et al. Theoretical Studies of Electronic Structuresand Spectroscopic Properties of Ru Complexes. Inorg. Chem 2008 47(7),2312-2324.· Xie Y,Yu HT,Fu HG*,A First-Principles Investigation of Stability and Structural Properties of the BaTiO3 (110) Polar Surface. Journal of Physical Chemistry C,2007,111,6343-6349.· Kan W,Yu HT,Fu HG*,et al. Theoretical investigation on the protonation reactions and products of the stable [N,C,C,S] isomers,Journal of Computational Chemistry,2007,28,2472-2482.· Zhao YL,Yu HT*,Fu HG,et al. Combined DFT,QCISD(T),and G2 mechanism investigation for the reactions of carbon monophosphide CP with unsaturated hydrocarbons allene CH2CCH2 and methylacetylene CH3CCH,Journal of Computational Chemistry,2007,28,1221-1233.· Pan QJ,Zhang HX*,Fu HG,et al. Electronic Structures and Spectroscopic Properties of Mono- and Binuclear d8 Complexes: a Theoretical Exploration on Promising Phosphorescent Materials. Journal of Physical Chemistry A,2007,111(2); 287-294.· Pan QJ,Zhou X,Fu HG*,et al. Theoretical studies on spectroscopic properties of binuclear palladium(Ⅱ) halide with phosphine ligands Journal of Photochemistry and Photobiology A: Chemistry,2007,188(2-3),287-292.· Xie Y,Fu HG*,Yu HT,et al. A first-principles investigation into the ferroelectric and antiferrodistortive instabilities of cubic SrTiO3,Journal of Physics: Condensed Matter,2007,19,506213(9pp)· Pan QJ,Zhou X,Fu HG*,et alStructures and electronic spectra of [Pt2(P2O5H2)4X2]4– (X = Cl,Br and I): a comparative study of ab initio and density functional theory Inorganic Chemistry Communications 2007,10,183–186.· Li SD,Jing LQ,Fu HG*,et al. Photoinduced charge property of nanosized perovskite-type LaFeO3 and its relationships with photocatalytic activity under visible irradiation. Materials Research Bulletin 2007,42,203-212.· Yang PP,Fu HG,Lin J*,et al. MCM-41 functionalized with YVO4: Eu3+: a novel drug delivery system. Nanotechnology 2007,18,235703(6pp).· Yang PP,Fu HG,Lin J*,et al. Luminescence functionalization of SBA-15 by YVO4: Eu3+ as a novel drug delivery system. Inorg. Chem. 2007,46,3202-3211.· Jing LQ,Fu HG*,Wang BQ,et al. Effects of Sn dopant on the photoinduced charge property and photocatalytic activity of TiO2 nanoparticles. Applied Catalysis B,2006,62,282-291.· Jing LQ,Xin BF,Fu HG*,et al. Effects of Surface Oxygen Vacancies on Photophysical and Photochemical Processes of Zn-Doped TiO2 Nanoparticles and Their Relationships. Journal of Physical Chemistry B2006,110,17860-17865.· Pan QJ,Fu HG*,Yu HT,et al. A Theoretical Insight Into Electronic Structures and Spectroscopic Properties of [Pt2(pop)4]4–,[Pt2(pcp)4]4– and Related Derivatives (pop = P2O5H22– and pcp = P2O4CH42–) Inorganic Chemistry,2006,45(21),8729–8735.· Liu KS,Zhou W,Fu HG*,et al. Influence of calcination temperatures on the photocatalytic activity and photo-induced hydrophilicity of wormhole-like mesoporous TiO2. Nanotechnology 2006,17,1363-1369.· Liu KS,Fu HG*,Shi KY,et al. Hydrophilicity and formation mechanism of large-pore mesoporous TiO2 thin films with tunable pore diameters. 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研究生学位论文格式统一要求

学位论文是研究生从事科研工作的成果的主要表现,它集中表明了作者在研究工作中获得的新的发明、理论或见解,是研究生申请硕士或博士学位的重要依据,也是科研领域中的重要文献资料和社会的宝贵财富。

为了提高研究生学位论文撰写质量,使学位论文在内容和格式上更加规范化、标准化,按照国家标准《学位论文的编写规则》,特作如下规定:

一、论文内容要求

研究生学位论文应用中文撰写,硕士学位论文字数一般为4~5万,硕士专业学位论文一般为2~5万;博士学位论文字数一般为8~10万(医学院研究生的学位论文字数要求参见其它规定)。学位论文内容要求完整、准确,应层次分明,数据可靠,文字简练,说明透彻,推理严谨,立论正确;应采用国家正式公布实施的简化汉字和法定的计量单位。文中采用的术语、符号、代号,全文必须统一,并符合规范化的要求。如果文中使用新的专业术语、缩略语、习惯用语,应加以注释。国外新的专业术语、缩略语,必须在译文后用圆括号注明原文。学位论文的插图、照片必须确保能复制或缩微。论文的页码须从“绪论”数起(包括绪论、正文、参考文献、附录、致谢等),用阿拉伯数字编连续码;文摘页、目次页、插图和附表清单、符号和缩略词的说明等,用阿拉伯数字单独编连续码。

论文内容一般应由十五个主要部分组成,依次为:1.封面(包括扉页);2.题名页;3.论文原创性声明;4.论文版权使用授权书;5.论文答辩委员会名单及答辩决议;6.中文摘要;7.英文摘要;8.目录;9.符号说明;10.论文正文;11.参考文献;12.注释;13.附录;14.致谢;15.攻读学位期间发表的学术论文目录。各部分的具体要求如下:

1.封面(包括扉页)

采用研究生院下发的统一封面,封页上填写论文题目(不超过20个字)、作者姓名、指导教师姓名、学科(专业)、工程领域(工程硕士填写)、答辩日期(或论文提交日期)等内容。上述内容也应在扉页上填写清楚,并增加填写研究生学号,专业学位研究生须注明申请专业学位的名称。

论文题目应避免使用不常用缩略语、首字母缩写字、字符、代号和公式等。题目用词必须考虑有助于选定关键词和编制题录、文摘等二次文献,可以提供检索用的特定实用信息。在学位论文中出现的题目都应完全相同。如果学位论文是基金资助项目,应将基金注释在题目所在页下“页脚”位置。

2.题名页

题名页应置于封二,是对学位论文进行著录的依据。除包括封面上的全部内容外,题名页还应增加关键词、资助基金项目、研究方向、申请学位级别(博士或硕士)、培养单位等内容。

3.论文原创性声明

该《声明》全文可以从网上下载,经学位论文作者签名后生效。

4.论文版权使用授权书

该《授权书》全文可以从网上下载,经学位论文作者和指导教师共同签名后生效。

5.论文答辩委员会名单及答辩决议

论文答辩委员会名单及答辩决议书须经全体答辩委员、答辩委员会主席签名,可以用复印件附于论文中。

6.中文摘要(包括关键词)

中文摘要应该将学位论文的内容不加注释和评论、简短明了地陈述出来,它包含论文中的基本信息,体现科研工作的核心思想,具有独立性和自含性,即不阅读论文的全文,就能获得必要的信息。摘要中有数据、有结论,是一篇完整的短文,可以独立使用,可以引用。摘要内容一般应说明本项科研工作的目的和意义、研究方法、实验方法、研究成果、结果和最终结论等,重点是结果和结论,应注意突出学位论文中具有创新性的成果和新见解的部分。摘要内容应包含与报告、论文等同量的主要信息,供读者确定有无必要阅读全文,也可供二次文献(文摘等)采用。中文摘要一般不宜超过500字(硕士论文)或800字(博士论文),如遇特殊需要字数可以略多。

7.英文摘要(包括关键词)

英文摘要内容(含论文题目)应与中文摘要基本相对应,要符合英语语法,语句通顺,文字流畅。英文摘要的字数以实词计,一般不宜超过300(硕士论文)或500(博士论文)个实词,如遇特殊需要字数可以略多。 摘要中一般不用图、表、化学结构式、非公知公用的符号和术语。

8.目录

目录应将文内的章节标题依次排列,标题应该简明扼要。目录页中每行均由标题名称和页码组成,包括引言(或前言),主要内容的篇、章、条、款、项序号和标题,小结,(引文)参考文献、注释、附录,可供参考的文献题录、索引等。 论文中如图表较多,可以分别列出清单置于目录页之后。图的清单应有序号、图题和页码。表的清单应有序号、表题和页码。

9.符号说明

论文中所用符号所表示的意义及单位(或量纲)。

符号、标志、缩略词、首字母缩写、计量单位、名词、术语等注释说明,如需汇集,可集中置于图表清单之后。

10.论文正文

论文正文是主体,是学位论文的核心部分,占主要篇幅,一般由标题、文字叙述、图、表格和公式等五个部分构成。写作形式可因科研项目的性质不同而变化,一般可包括调查对象、实验和观测方法、仪器设备、材料原料、实验和观测结果、计算方法和编程原理、数据资料、经过加工整理的图表、形成的论点和导出的结论等。

由于研究工作涉及的学科、选题、研究方法、工作进程、结果表达方式等有很大的差异,对正文内容不能作统一的规定。但是,必须实事求是,客观真切,准确完备,合乎逻辑,层次分明,简练可读。

11.参考文献

参考文献是文中引用的有具体文字来源的文献集合,应按文中引用出现的顺序列出,可以列在各章末尾,也可以列在正文的末尾。按照GB 7714《文后参考文献著录规则》的规定执行。

在引用别人的科研成果时,应特别注意在引用处加以说明,避免论文抄袭现象的发生。

12.注释

注释可作为脚注在页下分散著录,但切忌在文中注释。

13.附录

附录是作为论文主体的补充项目,并不是必须的。附录内容大致有以下几种情况:

(1)为了整篇论文材料的完整,但编入正文又有损于编排的条理和逻辑性,这一材料包括比正文更为详尽的信息、研究方法和技术更深入的叙述,建议可以阅读的参考文献题录,对了解正文内容有用的补充信息等。

(2)由于篇幅过大或取材于复制品而不便于编入正文的材料。

(3)不便于编入正文的罕见珍贵资料。

(4)对一般读者并非必要阅读,但对本专业同行有参考价值的资料。

(5)某些重要的'原始数据、数学推导、计算程序、框图、结构图、注释、统计表、计算机打印输出件等。

14.致谢

一般在正文之后,包括内容如下:

(1)对国家科学基金、资助研究工作的奖学金基金、合同单位、资助或支持的企业、组织或个人。

(2)对协助完成研究工作和提供便利条件的组织或个人。

(3)对在研究工作中提出建议和提供帮助的人。

(4)对给予转载和引用权的资料、图片、文献、研究思想和设想的所有者。

(5)对其他应感谢的组织和个人。 致谢应实事求是,切忌浮夸与庸俗之词。

15.攻读学位期间发表的学术论文目录

按学术论文发表的时间顺序,列出本人在攻读学位期间发表或已录用的学术论文清单(发表刊物名称、卷册号、页码、年月及论文署名)。其中应对发表刊物类别作具体说明,如:是否属于本校规定的学术刊物;论文署名单位是否为上海交通大学及作者排列顺序。

二、论文撰写规范

1.封页上的内容一律按统一格式和要求打印,必须正确无误。论文题目不得超过20个汉字。

2.硕士学位论文中文摘要字数为500字左右。博士学位论文中文摘要为800字左右。

(1)论文题目为三号黑体字,可以分成1或2行居中打印。

(2)论文题目下空一行居中打印“摘要”二字(三号黑体),字间空一格。

(3)“摘要”二字下空一行打印摘要内容(四号宋体)。每段开头空二格,标点符号占一格。

(4)摘要内容后下空一行打印“关键词”三字(四号黑体),其后为关键词(四号宋体)。关键词数量为4~6个,每一关键词之间用逗号分开,最后一个关键词后不打标点符号。

3.论文英文题目全部采用大写字母,可分成1~3行居中打印。每行左右两边至少留五个字符空格。

(1)题目下空三行居中打印“ABSTRACT”,再下空二行打印英文摘要内容。

(2)摘要内容每段开头留四个字符空格。

(3)摘要内容后下空二行打印“KEY WORDS”, 其后关键词小写,每一关键词之间用逗号分开,最后一个关键词后不打标点符号。

4.目录:“目录”两字(三号黑体),下空两行为章、节、小节及其开始页码。章、节、小节分别以1、1.1、1.1.1等数字依次标出。

目录中章、条的编号和绪论、附录等均顶格排。章、条的标题及附录等的标题与前面的内容之间空一个字的间隙。前言、章、条等与页码之间用“……”连接,页码不用括号。目录所列内容回行时顶格排。

5.章、条、段:章、条的编号顶格排,编号与标题或文字之间一个字的间隙。章的标题占两行。段的文字空两个字起排,回行时顶格排。

6.标题:每章标题以三号黑体居中打印;“章”下空两行为“节”以四号黑体左起打印;“节”下空一行为“小节”,以小四号或五号黑体左起打印。换行后打印论文正文。

7.正文:采用小四号或五号宋体。

8.图:图包括曲线图、构造图、示意图、图解、框图、流程图、纪录图、布置图、地图、照片、图版等。图应具有“自明性”,即只看图例,不阅读正文,就可理解图意。图中一律采用英文标注。图文说明用中文。

图应有编号,由“图”和从1开始的阿拉伯数字组成,例如“图1”、“图2”等。图的编号应一直连续到附录之前,并与章、条和表的编号无关。只有一幅图时,仍应标为“图1”。 图宜有图题,采用中英文对照,其英文字体为五号,中文字体为五好楷体,并置于图的编号之后,图的编号和图题应置于图下方的居中位置。引用图应在图题右上角标出文献来源。

曲线图的纵横坐标必须标注“量、标准规定符号、单位”。此三者只有在不必要标明(如无量纲等)的情况下方可省略。坐标上标注的量的符号和缩略词必须与正文中一致。

照片图要求主题和主要显示部分的轮廓鲜明,便于制版。如用放大缩小的复制品,必须清晰,反差适中。照片上应有表示目的物尺寸的标度。绘图必须工整、清楚、规范。其中机械零件图按机械制图规格要求:示意图应能清楚反映图示内容。

9.表:表的编排一般是内容和测试项目由左至右横读,数据依序竖读,应有自明性。表应有编号,由“表”和从1开始的阿拉伯数字组成,例如“表1”、“表2”等。表的编号应一直连续到附录之前,并与章、条和图的编号无关。只有一个表时,仍应标为“表1”。表宜有表题,表题即表的名称,置于表的编号之后。

表的编号和表题应置于表上方的居中位置。如某个表需要转页接排,在随后的各页上应重复表的编号。编号后跟表题(可省略)和“(续)”,如所示:表1(续),续表均应重复表头和关于单位的陈述。

10.公式:公式应另起一行居中排,较长的公式尽可能在等号处回行,或者在“+”、“-”等符号处回行。公式中分数线的横线,长短要分清,主要的横线应与等号取平。公式后应注明编号,用“……”连接,按章顺序编排。

公式下面的“式中:”空两个字起排,单独占一行。公式中所要解释的符号按先左后右,先上后下顺序分行空两个字排,再用破折号与释文连接,回行时与上一行释文对齐。上下行的破折号对齐

11.附录

附录编号(依次为附录1,附录2,……)、附录标题各占一行,置于附录条文之上居中位置。每一个附录应另起一面,以后各个附录通常另起一面,如果有多个较短的附录,也可接排。附录中的图表公式另编排序号,与正文分开。

12.参考文献

参考文献应另起一页,所列文件均空两个字起排,回行时顶格排,每个文件之后不加标点符号。

(1)按论文中参考文献出现的先后顺序用阿拉伯数字连续编号,将序号置于方括号内,并视具体情况将序号作为上角标,或作为论文的组成部分。如:“……李××[1]对此作了研究,数学模型见文献[2]。”

(2)参考文献中每条项目应齐全。文献中的作者不超过三位时全部列出;超过三位时一般只列前三位,后面加“等”字或“et al.”;作者姓名之间用逗号分开;中外人名一律采用姓在前,名在后的著录法。

参考文献中著录格式示例

①期刊

序号 作者,题名,刊名,出版年份,卷号(期号),起止页码

②专著

序号 作者,书名,版本(第1版不标注),出版地,出版者,出版年,起止页码

③论文集

序号 作者,题名,见(英文用In),主编,论文集名,出版地,出版年,起止页码

④学位论文

序号 作者,题名,[学位论文](英文用[Dissertation]),保存地点,保存单位,年份

⑤专利

序号 专利申请者,题名,国别,专利文献种类,专利号,出版日期

⑥技术标准

序号 起草责任者,标准代号,标准顺序号-发布年,标准名称,出版地,出版者,出版年度

13.攻读学位期间发表的学术论文目录格式同上述第12条。

三、打印及装订要求

1.研究生学位论文内容一律采用计算机编辑,用A4规格幅面纸输出,打印区面积为230mm×155mm(包括篇眉);或者设置页眉为2.5cm,页脚为3.0cm,页边距分别为上3.5cm,下4.0cm,左2.8cm,右2.8cm。

在特殊情况下(如图样、表不能缩小时),论文幅面允许根据实际需要延长和加宽。

2.用研究生院统一封面线装成册。

论文发表清样单

论文清样,是指论文经排字或制版后印出供校对用的样张称为校样,最后一次校正付印的校样称为“清样”。

这是出版术语,具体可以理解为,在论文要出版的时候,编辑会打印出来杂志草稿,方便校对和排版,经过组版人员对大样的修改之后,发出的纸样就可以叫做清样了,然后将清样下发到车间改正后,就可以发排了。

扩展资料

论文清样重点包括以下内容:

1、论文的中、英文标题、摘要和关键词;

2、作者姓名、单位、地址和邮编及脚注中的内容;

3、正文中的图题、标题及图表中的文字和数字;

4、正文中和公式中出现的物理量符号及其单位的大小写、上下角标、矢量;

5、参考文献在正文中引出的位置及文后标注的项目(刊名、年、卷、期、页码等)。

问题一:论文的清样来了,看看这是什么意思 就是纸质样刊的电子版,有些人拿样刊时间确实来不及了,就可以把清样拿去快印。 问题二:什么是文章清样 稿件经排字或制版后印出供校对用的样张称为校样,最后一次校正付印的校样称为“清样” 问题三:什么是清样稿 这个问题很简单,就是文章印刷之前,编辑部已经将您文章排好版了,不会再有大的变化了的版本,让作者在检查确亥一下。这个版本的稿件就叫清样稿。 问题四:想问一下SCI论文怎么清样?? 看编辑给你的信怎么说的。不同的杂志要求不同,有点要求直接在pdf上修改,有的要求页码,行号,原文,更改后,注释,以附件形式发回,当然,现在很多杂志可以在线校正清样。 问题五:什么是清样 稿件经排字或制版后印出供校对用的样张称为校样,最后一次校正付印的校样称为“清样” 问题六:文章接受后一般多久能收到清样 应该是投稿后编辑收到稿件的时间,退稿修改后编辑再收到稿件时间,通过后发布到网络上版本的时间,可以接受出印刷版时间。 问题七:文章录用,但没有进行清样校正,可以再修改吗 您的稿件已经被审阅,请参考附录的审稿意见。 我(应该是杂志的审稿编辑)也评估了您的论文,并认同审稿委员的意见。 我认为您的论文不适合被推荐发表在Mechanical Systems and Signal Processing。 并且根据审稿委员的意见,我们不对您的稿件作进一步的修改考虑。 兄弟别泄气,虽然已经GG了。但是这里丝毫没提到退稿的原因,如果不是原创性前瞻性之类的问题,再找另一家杂志投递吧~~ 问题八:提交论文清样后还能修改吗 10分 不能,但是可以针对其中细节错误做个修正的补充说明加发下,也算亡羊补牢吧。你自己考虑下

‍清样,指从最后校改的印刷版上打下来的校样,有时也指最后一次校定、准备付印的校样。这样的稿件就是清样稿。 相关概念校样、小样、清样、大样、红样,是用于在出版发行、印刷行业的名词,指为确保印刷出版质量,印刷品在付印前所经过的包括排版、校对的几个逐步上升直至确定稿样的过程。校样       ——是文稿和图稿的排入电脑后出的样稿,是用来让原作者用来修改用的,改正里面的原作错误和录入错误。小样       ——是继校样后,用来让作者更正样稿的版式错误和在前样稿中没改正的错误,是带有格式的文稿样版的缩小样。大样       ——大样就是打印出来的书的纸样,用于校对。大样文件通常指已经排好版的文件。出版社通常使用相关软件打开大样文件进行电脑校对,再把电脑校对结果标记在纸样上。

1、就是文章印刷之前,编辑部已经将文章排好版了,不会再有大的变化了的版本,让作者在检查确认一下这个版本的稿件就叫清样稿。

2、清样,指从最后校改的印刷版上打下来的校样,有时也指最后一次校定、准备付印的校样。这样的稿件就是清样稿。

3、相关概念 校样、小样、清样、大样、红样,是用于在出版发行、印刷行业的名词,指为确保印刷出版质量,印刷品在付印前所经过的包括排版、校对的几个逐步上升直至确定稿样的过程。

4、校样 ——是文稿和图稿的排入电脑后出的样稿,是用来让原作者用来修改用的,改正里面的原作错误和录入错误。

5、小样       ——是继校样后,用来让作者更正样稿的版式错误和在前样稿中没改正的错误,是带有格式的文稿样版的缩小样。

6、大样       ——大样就是打印出来的书的纸样,用于校对。大样文件通常指已经排好版的文件。出版社通常使用相关软件打开大样文件进行电脑校对,再把电脑校对结果标记在纸样上。

扩展资料:

1、校样、红样、清样、小样是用于印刷行业的名词

2、校样——是文稿和图稿的排入电脑后出的样稿,是用来让原作者用来修改用地,改正里面的原作错误和录入错误。

3、小样——是继校样后,用来让作者更正样稿的版式错误和在前样稿中没改正的错误,是带有格式的文稿样版的缩小样。

4、清样——是有大致的排版格式,不是正式的文稿样版。

5、红样——是指最后的校样,是用印刷机或打印机制成的成品样稿,用来让用户最终确定稿件人终样,之后就可以上机印刷了。

小学生发表论文获奖清单

获奖栏,如果有很多获奖的话,那你就列表格吧,这样子看上去比较舒服。就直接写上获奖名称,还有获奖日期。表格上面要写上获奖栏。这样就可以了。

这名小学生,从小就博览群书,而且他的父亲是大学的教授,耳濡目染之下,自然可以写出好的论文。

作者1,作者2.论文题目.发表刊物.期数.

该小学生的父母是涉事研究所的博士。没有父母和老师的帮忙,该小学生是写不出如此深奥的论文的。做人还是要踏踏实实一步步地向前走,“揠苗助长”不可取。

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