学术聚焦

零被引论文的形成因素分析——以光谱学领域零被引论文的国家、机构和主题分布为例

  • 高继平 ,
  • 潘云涛 ,
  • 武夷山
展开
  • 1. 中国科学技术信息研究所, 北京100038;
    2. 大连理工大学WISE实验室, 大连116024
高继平,助理研究员,研究方向为科学计量、文献计量、专利计量等,电子信箱:gaojp@istic.ac.cn

收稿日期: 2014-12-19

  修回日期: 2015-03-01

  网络出版日期: 2015-05-05

基金资助

国家自然科学基金项目(71373252);中国科学技术信息研究所预研项目(YY-201430)

An analysis of uncited papers in spectroscopy: From the perspectives of country, institution and topic distributions

  • GAO Jiping ,
  • PAN Yuntao ,
  • WU Yishan
Expand
  • 1. The Institute of Scientific and Technical Information of China, Beijing 100038, China;
    2. WISE LAB in Dalian University of Technology, Dalian 116024, China

Received date: 2014-12-19

  Revised date: 2015-03-01

  Online published: 2015-05-05

摘要

相对于高被引论文的受关注程度而言,零被引论文的原因、状况、分布及科学价值、学术影响等有待深入分析。以2013 年JCR 光谱学领域中的43 种期刊为例,研究了发表于2003—2012 年的12462 篇零被引论文的国家分布、机构分布、主题分布。在国家和机构方面,光谱学领域的零被引论文主要分布在白俄罗斯、乌克兰、中国、俄罗斯、韩国等母语为非英语国家的研究院所和大学;在研究主题方面,主要涉及拉曼光谱、红外光谱、质谱法、荧光光谱等研究内容。探讨了可能造成论文零被引的影响因素。

本文引用格式

高继平 , 潘云涛 , 武夷山 . 零被引论文的形成因素分析——以光谱学领域零被引论文的国家、机构和主题分布为例[J]. 科技导报, 2015 , 33(8) : 112 -119 . DOI: 10.3981/j.issn.1000-7857.2015.08.019

Abstract

Compared to highly cited papers, less attention is paid to uncited papers. Taking 43 journals in the spectroscopy indexed by JCR in the 2013 as an example, this paper analyzes the 12462 uncited papers published from 2003 to 2012 from the perspectives of country, institution and topic distributions. With regard to the country distribution and the institution distribution, it is found that the uncited papers are mostly produced by the institutions and universities in Belarus, Ukraine, China, Russia, South Korea and other countries, whose mother tongues are not English. With regard ro the topics, the overlay network analysis in the time zone shows the topic distribution in different periods, including the Raman spectrum, the infrared spectrum, the mass spectrometry, the fluorescence spectroscopy and so on. Furthermore, from the distribution analysis, the possible influencing factors of the uncited papers may be identified.

参考文献

[1] 刘雪立, 方红玲, 周志新, 等. 科技期刊反向评价指标——零被引论文率及其与其他文献计量学指标的关系[J]. 中国科技期刊研究, 2011, 22(4): 525-528. Liu Xueli, Fang Hongling, Zhou Zhixin, et al. S & T journals evaluation indicators for poor quality: Relationship analysis between uncited papers' rate and other indicators[J]. Chinese Journal of Scientific and Technical Periodical, 2011, 22(4): 525-528.
[2] Rousseau R. Double exponential models for first-citation processes[J]. Scientometrics, 1994, 30(1): 213-227.
[3] 梁立明, 林晓锦, 钟镇, 等. 迟滞承认: 科学中的睡美人现象——以一篇被迟滞承认的超弦理论论文为例[J]. 自然辩证法通讯, 2009, 31(1): 39-45. Liang Liming, Lin Xiaojin, Zhong Zhen, et al. Delayed recognition: Sleeping beauties in science—A case study of a superstring theory paper[J]. Journalof Dialectics of Nature, 2009, 31(1): 39-45.
[4] Egghe L. The distribution of the uncitedness factor and its functional relation with the impact factor[J]. Scientometrics, 2010, 83(3): 689-695.
[5] Burrell Q L. Alternative thoughts on uncitedness[J]. Journal of the American Society for Information Science and Technology, 2012, 63(7): 1466-1470.
[6] 孔朝霞, 陈璐. 应当慎重对待零被引论文[J]. 中国科技期刊研究, 2013, 24(3): 467-471. Kong Chaoxia, Chen Lu. Taking uncited papers seriously[J]. Chinese Journal of Scientific and Technical Periodical, 2013, 24(3): 467-471,
[7] 付晓霞, 游苏宁, 李贵存. 2000~2009 年中国SCI论文的零被引数据分析[J]. 科学通报, 2012, 57(18): 1703-1710. Fu Xiaoxia, You Suning, Li Guicun. Analysis of non-cited articles from china published from 2000 to 2009 indexed by SCI[J].Chinese Science Bulletin, 2012, 57(18): 1703-1710.
[8] 朱梦皎, 武夷山. 零被引现象: 文献综述[J]. 情报理论与实践, 2013, 36(8): 111-116. Zhu Mengjiao, Wu Yishan. Review on the papers' uncited[J]. Information Studies: Theory & Application, 2013, 36(8): 111-116.
[9] Glänzel W, Schlemmer B, Thijs B. Better late than never? on the chance to become highly cited only beyond the standard bibliometric time horizon[J]. Scientometrics, 2003, 58(3): 571-586.
[10] Hu Z, Wu Y. Regularity in the time-dependent distribution of the percentage of never-cited papers: An empirical pilot study based on the six journals[J]. Journal of Informetrics, 8(1): 136-146.
[11] Seglen P O. Why the impact factor of journals should not be used for evaluating research[J]. BMJ,1997, 314(7079): 497.
[12] 胡泽文. 论文零被引率的演变规律及其影响因素研究[D]. 南京: 南京大学, 2014. Hu Zewen. Study on regularity in time-dependent distribution of and influencing factors on percentage of uncited articles[D]. Nanjing: Nanjing University, 2014.
[13] Li J, Qiao L, Li W, et al. Chinese-language articles are not biased in citations: Evidences from Chinese- English bilingual journals in Scopus and Web of Science[J]. Journal of Informetrics, 2014, 8(4): 912-916.
[14] 陈超美. Mapping scientific frontiers: The quest for knowledge visuzalization[ M]. 北京: 科学出版社, 2014. Chen Chaomei. Mapping scientific frontiers: The quest for knowledge visualization[M]. Beijing: Science Press, 2014.
[15] Rafols I, Porter A L, Leydesdorff L. Science overlay maps: A new tool for research policy and library management[J]. Journal of the American Society for Information Science and Technology, 2010, 61 (9): 1871-1887.
[16] Chen C, Leydesdorff L. Patterns of connections and movements in dual-map overlays: A new method of publication portfolio analysis[J]. Journal of the Association for Information Science and Technology, 2014, 65(2): 334-351.
[17] 许海云, 刘春江, 雷炳旭, 等. 学科交叉的测度, 可视化研究及应用 ——一个情报学文献计量研究案例[J]. 图书情报工作, 2014, 58(12): 95-101. Xu Haiyun, Liu Chunjiang, Lei Bingxu, et al. Measurement, visualization and application of interdisciplinary research[J]. Library and Information Service, 2014, 58(12): 95-101.
[18] Chen C. CiteSpace II: Detecting and visualizing emerging trends and transient patterns in scientific literature[J]. Journal of the American Society for information Science and Technology, 2006, 57(3): 359-377.
[19] ChenC,IbekweSanjuanF,HouJ.Thestructureanddynamicsof cocitation clusters: A multiple- perspective cocitationanalysis[J]. Journal of the American Society for Information Science and Technology, 2010, 61 (7): 1386-1409.
[20] 陈超美, 陈悦, 侯剑华, 等. CiteSpaceⅡ: 科学文献中新趋势与新动态的识别与可视化[J]. 情报学报, 2009(3): 401-421. Chen Chaomei, Chen Yue, Hou Jianhua, et al. CiteSpace II: Detecting and visualizing emerging trends and transient patterns in scientific literature[J]. Journal of the China Society for Scientific and Technical Information, 2009(3): 401-421.
[21] 高继平,丁堃. 专利研究文献的可视化分析[J]. 情报杂志, 2009(7): 12-16. Gao Jiping, Ding Kun. Analysis through visualizing the patent research articles[J]. Journal of Intelligence, 2009(7): 12-16.
[22] Kleinberg J. Bursty and hierarchical structure in streams[J]. Data Mining and Knowledge Discovery, 2003, 7(4): 373-397.
[23] 沈君, 王续琨, 高继平, 等. 基于文献计量指标的关键技术的探寻——以第三代移动通信技术为例[J]. 情报杂志, 2011(9): 34-39. Shen Jun, Wang Xukun, Gao Jiping, et al. Identification of the key technologies with indicators in bibliometrics: Based on the field of third generation mobile communication[J]. Journal of Intelligence, 2011 (9): 34-39.
[24] 邓琴英. 波谱分析教程[M]. 北京: 科学出版社, 2003. Deng Qinying. Spectrum analysis tutorial[M]. Beijing: Science Press, 2003.
[25] 黄卫宁, 张君慧. FT-Raman 光谱与谷物化学研究的最新进展[J]. 食品科学, 2005, 25(11): 411-415. Huang Weining, Zhang Junhui. Latest development in the applications of FT- Raman spectroscopy in cereal Chemistry research[J]. Food Science, 2005, 25(11): 411-415.
[26] 陈和生, 孙振亚, 邵景昌. 八种不同来源二氧化硅的红外光谱特征研究[J]. 硅酸盐通报, 2011, 30(4): 934-937. Chen Hesheng, Sun Zhenya, Shao Jingchang. Investigation on FT-IR spectroscopy for eight different sources of SiO2[J]. Bulletin of the Chinese Ceramic Society, 2011, 30(4): 934-937.
[27] 梁前进, 王鹏程, 白燕荣. 蛋白质磷酸化修饰研究进展[J]. 科技导报, 2012, 30(31): 73-79. Chai Qianjin, Wang Pengcheng, Bai Yanrong. Summarization on the progress in protein phosphorylation[J]. Science & Technology Review, 2012, 30(31): 73-79.
[28] 秦昆明,石芸,谈献和,等. 现代仪器分析技术在中药炮制机理研究中的应用[J]. 中国科学: 化学, 2010(6): 668-678. Qin Kunming, Shi Yun, Tan Xianhe, et al. Application of modern instrumental analytical techniques in the mechanism research of Chinese medicine processing[J]. Scientia Sinica: Chimica, 2010(6): 668-678.
[29] Chang Yan, Zeper Abliz, Wang Muzou. 串联质谱新技术及其在药物代谢研究中的应用进展[J]. 药学学报, 2000, 35(1): 73-78. Chang Yan, Zeper Abliz, Wang Muzou. New techniques of tandem mass spectrometry and its application in the study of drug metabolism[J]. Acta Pharmaceutica Sinica, 2000, 35(1): 73-78.
[30] 陈卫, 孙世刚. 纳米材料科学中的谱学研究[J]. 光谱学与光谱分析, 2002, 22(3): 504-510. Chen Wei, Sun Shigang. Spectral analysis in nanometer material science[J]. Spectroscopy and Spectral Analysis, 2002, 22(3): 504-510.
[31] 黄木辉. 微波消解-石墨炉原子吸收光谱法测定纳米二氧化钛中痕量砷[J]. 中国无机分析化学, 2013, 3(4): 41-44. Huang Muhui. Determination of trace arsenic in nano-titanium dioxide by microwave digestion-graphite furnace atomic absorption spectrometry[J]. Chinese Journal of Inorganic Analytical Chemistry, 2013, 3(4): 41- 44.
[32] 闫国庆, 朱冯喆. 金纳米复合薄膜的吸收光谱测试技术研究[J]. 光电子技术, 2013(1): 24-26. Yan Guoqing, Zhu Fengzhe. Studies of absorption spectrum measurement of aurum nanocomposite thin film[J]. Optoelectronic Technology, 2013(1): 24-26.
[33] 于燕波, 藏鹏, 付元华, 等. 近红外光谱法快速测定植物油中脂肪酸含量[J]. 光谱学与光谱分析, 2008, 28(7): 1554-1558. Yu Yanbo, Zang Peng, Fu Yuanhua, et al. The rapid analysis of fatty acids in vegetable oils by near infrared spectrum[J]. Spectroscopy and Spectral Analysis, 28(7): 1554-1558.
[34] 马冬红, 王锡昌, 刘利平, 等. 近红外光谱技术在食品产地溯源中的研究进展[J]. 光谱学与光谱分析, 2011, 31(4): 877-881. Ma Donghong, Wang Xichang, Liu Liping, et al. Current progress in food geographical origin traceability by near infrared spectroscopy technology[J]. Spectroscopy and Spectral Analysis, 2011, 31(4): 877- 881.,
[35] 郭兰萍, 黄璐琦. 近红外光谱技术及其在中药道地性研究中的应用[J]. 中国中药杂志, 2009(14): 1751-1757. Guo Lanping, Huang Luqi. Near infrared spectroscopy (NIRS) technology and its application in geoherbs[J]. China Journal of Chinese Material Medica, 2009(14): 1751-1757.
[36] 蓝建慧, 卢贵武, 王增梅, 等. Ca3NbGa3Si2O14 (CNGS) 晶体的拉曼光谱分析[J]. 光谱学与光谱分析, 2006, 26(5): 861-864. Lan Jianhui, Lu Guiwu, Wang Zengmei, et al. Raman scattering spectra of Ca3NbGa3Si2O14 (CNGS) crystals[J]. Spectroscopy and Spectral Analysis, 2006, 26(5): 861-864.
[37] 田冰, 贾彩丽, 夏若虹, 等. 50 Hz 脉冲电场作用下胰岛素构象变化的拉曼光谱分析[J]. 光谱学与光谱分析, 2005, 24(11): 1331-1333. Tian Bing, Jia Caili, Xia Ruohong, et al. Raman analysis of conformation changes of insulin solvent after being exposed to ELF pulsed electric field[J]. Spectroscopy and Spectral Analysis, 2005, 24 (11): 1331-1333.
[38] 李乐军, 陈树德, 乔登江. 脉冲电场与牛血清白蛋白相互作用的同步荧光光谱和拉曼光谱比较研究[J]. 光谱学与光谱分析, 2006, 26(1): 81-85. Li Lejun, Chen Shude, Qiao Dengjiang. Synchronous fluorescence and Raman Spectroscopy study on the interaction of pulsed electric field (PEF) and bovine serum albumin (BSA)[J]. Spectroscopy and Spectral Analysis, 2006, 26(1): 81-85.,
[39] 郭萍, 袁亚莉, 熊平. 中草药绞股蓝的傅里叶变换红外和拉曼光谱分析[J]. 光谱学与光谱分析, 2004, 24(10): 1210-1212. Guo Ping, Yuan Yali, Xiong Ping. The analysis of gynostemmapentaphyllum (Thunb) makino for Chinese crude drug by FT-IR and FT-Raman[J]. Spectroscopy and Spectral Analysis, 2004, 24(10): 1210-1212.
[40] 徐广通, 袁洪福, 陆婉珍. 现代近红外光谱技术及应用进展[J]. 光谱学与光谱分析, 2000, 20(2): 134-142. Xu Guangtong, Yuan Hongfu, Lu Wanzhen. Development of modern near infrared spectroscopic techniques and its applications[J]. Spectroscopy and Spectral Analysis, 2000, 20(2): 134-142.
[41] 何诚, 冯仲科, 韩旭, 等. 基于多光谱数据的永定河流域植被生物量反演[J]. 光谱学与光谱分析, 2012, 32(12): 3353-3357. He Cheng, Feng Zhongke, Han Xu, et al. The inversion processing of vegetation biomass along Yongding river based on multispectral information[J]. Spectroscopy and Spectral Analysis, 2012, 32(12): 3353-3357.
文章导航

/