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类型SCI论文撰写与投稿研究课件.ppt

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    SCI论文撰写与投稿研究课件.ppt
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    1、1,SCI论文撰写与投稿,报告人:张益军,2,关于SCI,SCI(Science Citation Index)是由美国科学信息研究所(ISI)1961年创办出版的引文数据库。SCI(科学引文索引)、EI(工程索引)、ISTP(科技会议录索引) 是世界著名的三大科技文献检索系统,是国际公认的进行科学统计与科学评价的主要检索工具,其中以SCI最为重要。,3,关于SCIE,SCIE(SCI Expanded)是科学引文索引扩展版。 SCIE影响价值不如SCI, SCI相当于EI核心,而SCIE相当于EI非核心。办的比较好的SCIE杂志可能成为SCI杂志,而办的较差的SCI杂志可能变为SCIE,甚至

    2、被SCI和SCIE所放弃。,4,SCI或SCIE相关期刊,APS (American Physical Society): Physical Review, Physical Review Letters, Physical Review A/B AIP (American Institute of Physics): Applied Physics Letters, Journal of Applied Physics AVS (American Vacuum Society): Journal of Vacuum Science and Technology A/B OSA (Optica

    3、l Society of America): Optics Express, Optics Letters, Applied Optics, Chinese Optics Letters SPIE (Society of Photo-Optical Instrumentation Engineers): Optical Engineering IOP (Institute of Physics): Chinese Physics B, Chinese Physics Letters, Journal of Physics D:Applied Physics Elsevier: Surface

    4、Science, Applied Surface Science, Solid State Communications, Optics Communications, Materials Science in Semiconductor Processing, Vacuum, Optik, etc,5,SCI论文撰写,第1步:多看文献,对自己的研究领域有相当了解 (1)先读中文资料,后读外文资料; (2)先读综合性资料,后读专题性资料; (3)先读近期资料,后读历史性资料; (4)先读文摘,后读全文; (5)先粗读,后精读。 第2步:多做笔记,好记性不如烂笔头 (摘抄好的语句,结论性的东西)

    5、 第3步:寻找创新点,潜心理论推导或做实验(文献看多了,自然就有了),6,SCI论文撰写,正文IMRDC 模式: 引言 (Introduction) 材料与方法(Materials and Methods) 结果(Results)和(and)讨论(Discussion) 结论(Conclusion) 一篇完整的论文=IMRDC+题名(Title)+摘要(Abstract)+关键词(Keywords)+致谢(Acknowledgements)+参考文献(References)。,7,SCI论文撰写,题目(Title) 基本原则:“以最少数量的单词来充分表述论文的内容”; 基本要求(ABC):准确

    6、(Accuracy);简洁(Brevity);清楚(Clarity); 句法结构 :名词性短语,避免使用冠词; 作用:吸引读者;帮助文献追踪或检索。,8,SCI论文撰写,摘要(Abstract) 报道性摘要(Informative Abstract) : 主要内容:目的、方法、结果、结论(或意义) 基本要求:(1)准确、简洁、清楚;(2)避免引用文献;(3)避免使用化学结构式、数学表达式、希腊文等特殊符号;(4)避免使用自我高度评价语言。,9,SCI论文撰写,引言(Introduction) 地位:决定着读者对论文的“第一印象”,是论文中最难写的部分之一 ; 主要内容:研究背景、存在问题、研究

    7、目的; 基本要求:(1)引用“最相关”的文献;(2)层层深入,强调创新性;(3)避免评价前人工作的欠缺;,10,SCI论文撰写,材料与方法(Materials and Methods) 基本要求:(1)要求实验结果的重复性;(2)对材料的描述应清楚、准确;(3)对方法的描述要详略得当、重点突出;(4)时态:一般过去时;语态:被动语态。,11,SCI论文撰写,结果(Results) 地位:整篇论文的立足点; 基本要求: (1)高度概括实验或观察结果;(2)数据表达可采用文字与图表相组合的形式;(3)适当说明原始数据,帮助读者理解;(4)时态:一般现在时。,12,SCI论文撰写,讨论(Discus

    8、sion) 地位:整篇论文的重中之重,反映出作者研究问题的深度和广度; 基本要求: (1)篇幅最长,按照层次讨论;(2)选择合适的结果深度讨论,讨论要和结果前后呼应;(3)避免含蓄,尽量表达清楚、明确;(4)推论要符合逻辑,避免错误的、过度的或极不充分的讨论。,13,SCI论文撰写,结论(Conclusion) 主要内容: (1)本文重要的实验结果 ;(2)作者研究的主要认识或论点 ;(3)研究结果可能的应用前景及局限性 ;(4)建议需要进一步研究的课题或方向。 基本要求:避免简单地重复摘要的内容。,14,SCI论文撰写,参考文献(References) 基本要求: (1)所选用文献的主题必须

    9、与论文密切相关 ;(2)尽可能引用己公开出版的文献 ;(3)优先引用最新发表的重要期刊或投稿期刊的论文 ;(4)避免过多地,特别是不必要地引用作者本人的文献;(5)格式按照不同期刊要求。,15,SCI论文投稿,正确选择期刊 征稿范围 影响因子 出版周期 审稿周期 出版费用 认真阅读投稿须知,修改论文格式,16,SCI论文投稿,稿件准备 投稿信(Cover Letter):简述所投稿件的核心内容、主要发现和意义,拟投期刊,通讯作者,通讯方式等; 版权协议(Copyright Agreement); A4 Word稿件一份; 插图:Tiff格式,分辨率600dpi。,17,SCI论文投稿,作者注册

    10、,在线投稿(可推荐审稿专家); 投稿状态 1. Submitted to Journal; 2. With editor; 3. Reviewer(s) invited; 4. Under review; 5. Required Reviews Completed; 6. Evaluating Recommendation; 7. Minor revision/Major revision; 8. Revision Submitted to Journal; 9. Under Re-review; 10. Accepted/Rejected.,18,SCI投稿经验,Applied Physic

    11、s Letters:1. High-efficiency graded band-gap AlxGa1-xAs/GaAs photocathodes grown by metalorganic chemical vapor deposition. 2011, Vol.99: 101104 Journal of Applied Physics:1. Photoemission characteristics of different-structure reflection-mode GaAs photocathodes. 2011, Vol.110: 063113 2. Influence o

    12、f exponential-doping structure on photoemission capability of transmission-mode GaAs photocathodes. 2010, Vol.108: 093108,19,SCI投稿经验,Applied Optics: 1. Variation of spectral response for exponential-doped transmission-mode GaAs photocathodes in the preparation process. 2010, Vol.49(20): 39353940 2.

    13、Annealing study of carrier concentration in gradient-doped GaAs/GaAlAs epilayers grown by molecular beam epitaxy. 2009, Vol.48(9): 17151720,20,SCI投稿经验,Chinese Physics B:1. Improvement of photoemission performance of a gradient-doping transmission- mode GaAs photocathode. 2011, Vol.20(11): 118501 2.

    14、Comparison of the photoemission behaviour between negative electron affinity GaAs and GaN photocathodes . 2011, Vol.20(4): 048501 3. Distribution of carriers in gradient-doping transmission-mode GaAs photocathodes grown by molecular beam epitaxy. 2009, Vol.18(10): 45414546,21,SCI投稿经验,物理学报: 指数掺杂结构对透射

    15、式GaAs光电阴极量子效率的影响研究. 2011, Vol.60(6):067301 Chinese Physics Letters: 1. The High Quantum Efficiency of Exponential-Doping AlGaAs/GaAs Photocathodes Grown by Metalorganic Chemical Vapor Deposition. 2013, Vol.30(4): 044205,22,SCI投稿经验,第1篇英文写作: A study of (Cs, O) adsorption on GaAs (100)-(24) reconstruct

    16、ion grown by MBE, IVESC 2008 第1次SCI投稿: Distribution of carriers in gradient-doping GaAs/GaAlAs epilayers grown by MBE 期刊:Chinese Physics Letters 审稿时间:2008年10月30日12月26日; 退稿意见:文章了无新意;一篇小文章有11个作者。,23,SCI投稿经验,(第1篇) Applied Optics 题目: Annealing study of carrier concentration in gradient-doped GaAs/GaAIAs

    17、 epilayers grown by molecular beam epitaxy审稿过程: 投稿时间:2008.12.1; 初审审回: 2009.1.13; 审稿意见: Major revision; 2个审稿人:4条意见+10条意见; 投修改稿: 2009.1.28; 复审审回: 2009.2.25; 审稿意见: Minor revision; 审稿人坚持他的观点; 投修改稿: 2009.2.26; Accepted: 2009.3.2.,24,SCI投稿经验,(第2篇) Applied Optics 题目: Variation of spectral response for expo

    18、nential-doped transmission-mode GaAs photocathodes in the preparation process审稿过程: 投稿时间:2010.3.23; 初审审回: 2010.5.11; 审稿意见: Major revision; 2个审稿人:10条意见+5条意见; 投修改稿: 2010.5.27; 复审审回: 2010.6.15; Accepted: 2010.6.15.,25,SCI投稿经验,(第1篇) Chinese Physics B 题目:Distribution of carriers in gradient-doping transmi

    19、ssion-mode GaAs photocathodes grown by molecular beam epitaxy 审稿过程: 投稿时间:2009.1.11; Preliminary review(初审):2009.1.122.11; 退修意见:没有说明论文MBE生长的可重复性和稳定性;寄打印修改稿和版权协议; 投修改稿:2009.2.23; Formal review(评审):2009.3.43.26; 退修意见:润色文字,多引用近几年同行论文;寄打印修改稿和版权协议; 投修改稿:2009.4.7; Final review(终审):2009.4.9; Accepted: 2009.

    20、4.9.,26,SCI投稿经验,(第2篇) Chinese Physics B 题目: Comparison of the photoemission behavior between negative electron affinity GaAs and GaN photocathodes 审稿过程: 投稿时间:2010.10.26; Preliminary review(初审):2010.11.211.23; 退修意见:补充图的说明;修改后终审,寄打印修改稿和版权协议; 投修改稿:2010.12.1; Final review(终审):2010.12.7; Accepted: 2010.1

    21、2.8.,27,SCI投稿经验,(第3篇) Chinese Physics B 题目: Improvement of photoemission performance of a gradient-doping transmission- mode GaAs photocathode 审稿过程: 投稿时间:2011.4.12; Preliminary review(初审):2011.4.158.8; 退修意见:润色文字;修改后终审,寄打印修改稿和版权协议; 投修改稿:2011.8.22; Final review(终审):2011.8.29; Accepted: 2011.8.29.,28,S

    22、CI投稿经验,物理学报 题目:指数掺杂结构对透射式GaAs光电阴极量子效率的影响研究 审稿过程: 投稿时间:2010.7.9; 直接退修:2010.7.12,要求多引用Chinese Physics B和物理学报的文献; 投修改稿:2010.7.12; 初审: 2010.7.138.31;(一直没审回,发了催稿信) 转送审: 2010.9.2; 再转送审:2010.9.5; 审回: 2010.9.7;修改后终审,寄打印修改稿和版权协议; 投修改稿: 2010.9.23; 终审:2010.9.26; Accepted: 2010.9.26.,29,SCI投稿经验,Chinese Physics

    23、Letters 题目:The High Quantum Efficiency of Exponential-Doping AlGaAs/GaAs Photocathodes Grown by Metalorganic Chemical Vapor Deposition 审稿过程: 投稿时间:2012.11.5;(被APL, APE拒稿后改投) 初审: 2012.11.62013.1.21; 退修意见:2个审稿人,4条意见+2条意见 投修改稿: 2013.1.28; 复审:2013.1.292013.2.10 二次退修意见:1个审稿人,1条意见 投二次修改稿:2013.2.19 Accepted

    24、: 2013.2.19.,30,SCI投稿经验,(第1篇) Journal of Applied Physics 题目: Influence of exponential-doping structure on photoemission capability of transmission-mode GaAs photocathodes 初审过程: Author-Approved Files Submitted: 2010.6.29; Under Consideration-Editorial Office: 2010.6.29; Securing Reviewer(s): 2010.6.3

    25、0; Under Review: 2010.7.9; Editorial Evaluation-Editor: 2010.8.3; Decision Letter Being Prepared: 2010.8.3; Decision Sent: 2010.8.4; Major revision,5条意见; Revision Received: 2010.8.24;,31,SCI投稿经验,(第1篇) Journal of Applied Physics 题目: Influence of exponential-doping structure on photoemission capabilit

    26、y of transmission-mode GaAs photocathodes 复审过程: Revision Received: 2010.8.24; Under Consideration-Editorial Office: 2010.8.25; Securing Reviewer(s): 2010.8.25; Under Review: 2010.8.28; Editorial Evaluation-Editor: 2010.9.17; Decision Letter Being Prepared: 2010.9.19; Decision Sent: 2010.9.27; Accept

    27、ed.,32,SCI投稿经验,(第2篇) Journal of Applied Physics 题目: Photoemission characteristics of different-structure reflection-mode GaAs photocathodes 初审过程: Author-Approved Files Submitted: 2011.6.7;(APL拒稿后改投) Under Consideration-Editorial Office: 2011.6.10; Securing Reviewer(s): 2011.6.12; Under Review: 2011.

    28、6.15; Editorial Evaluation-Editor: 2011.7.4; Decision Letter Being Prepared: 2011.7.8; Decision Sent: 2011.7.15; Minor revision,5条意见; Revision Received: 2011.7.25;,33,SCI投稿经验,(第2篇) Journal of Applied Physics 题目: Photoemission characteristics of different-structure reflection-mode GaAs photocathodes

    29、复审过程: Revision Received: 2011.7.25; Under Consideration-Editorial Office: 2011.7.26; Securing Reviewer(s): 2011.7.27; Under Review: 2011.7.27; Editorial Evaluation-Editor: 2011.8.17; Decision Letter Being Prepared: 2011.8.17; Decision Sent: 2011.8.27; Accepted.,34,SCI投稿经验,Applied Physics Letters 题目:

    30、High-efficiency graded band-gap AlxGa1-xAs/GaAs photocathodes grown by metalorganic chemical vapor deposition 初审过程: Author-Approved Files Submitted: 2011.7.5; Under Consideration-Editorial Office: 2011.7.6; Securing Reviewer(s): 2011.7.11; Under Review: 2011.7.11; Editorial Evaluation-Editor: 2011.7

    31、.25; Decision Letter Being Prepared: 2011.7.26; Decision Sent: 2011.7.27; Publish in APL with revision,2条意见; Revision Received: 2011.8.1;,35,SCI投稿经验,Applied Physics Letters 题目:High-efficiency graded band-gap AlxGa1-xAs/GaAs photocathodes grown by metalorganic chemical vapor deposition 复审过程: Revision

    32、 Received: 2011.8.1; Under Consideration-Editorial Office: 2011.8.4; Securing Reviewer(s): 2011.8.4; Under Review: 2011.8.8; Editorial Evaluation-Editor: 2011.8.9; Decision Letter Being Prepared: 2011.8.9; Decision Sent: 2011.8.19; Accepted.,36,总结,灵感=心静+环境; 好的导师,好的课题; 谦虚谨慎,有的放矢; 小木虫论坛 (http:/ ),37,谢谢!,

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