[1] GARFIELD E. Citation indexes for science. a new dimension in documentation through association of ideas[J]. International journal of epidemiology, 2006, 35(5):1123-1127.
[2] 王海燕, 马峥, 潘云涛, 等. 高被引论文与"睡美人" 论文引用曲线及影响因素研究[J]. 图书情报工作, 2015, 59(16):83-89.
[3] AVRAMESCU A. Actuality and obsolescence of scientific literature[J]. Journal of the American Society for Information Science, 1979, 30(5):296-303.
[4] 李江,姜明利,李玥婷.引文曲线的分析框架研究——以诺贝尔奖得主的引文曲线为例[J].中国图书馆学报,2014,40(2):41-49.
[5] VERSTAK A, ACHARYA A, SUZUKI H, et al. On the shoulders of giants:the growing impact of older articles[J]. arXiv preprint arXiv:1411.0275, 2014.
[6] CANO V, LIND N. Citation life cycles of ten citation classics[J]. Scientometrics, 1991, 22(2):297-312.
[7] 陈云伟. 引文网络演化研究进展分析[J]. 情报科学, 2016, 34(8):171-176.
[8] 马娜,张智雄,于改红.科技论文引用对象研究综述[J].图书情报工作,2019,63(23):139-145.
[9] 夏琬钧,陈晓红,江艳萍.学术论文引用预测研究进展[J].图书情报工作,2020,64(6):138-145.
[10] ROUSSEAU R. Robert fairthorne and the empirical power laws[J]. The journal of documentation, 2005, 61(2):194-202.
[11] LIU Y, ROUSSEAU R. Knowledge diffusion through publications and citations:a case study using ESI-fields as unit of diffusion[J]. Journal of the American Society for Information Science and Technology, 2010, 61(2):340-351.
[12] 梁国强,侯海燕,高桐,等.基于创新扩散理论的学术论文影响力广度研究[J].图书情报工作,2019,63(2):91-98.
[13] ROWLANDS I. Journal diffusion factors:a new approach to measuring research influence[J]. Aslib proceedings, 2002, 54(2):77-84.
[14] YU G, WANG M Y, YU D R. Characterizing knowledge diffusion of nanoscience & nanotechnology by citation analysis[J]. Scientometrics, 2010, 84(1):81-97.
[15] FRANDSEN T F, ROUSSEAU R, ROWLANDS I. Diffusion factors[J]. Journal of documentation, 2006, 62(1):58-72.
[16] 闵超,DING Y,李江,等.单篇论著的引文扩散[J].情报学报,2018,37(4):341-350.
[17] 董克, 张斌. 学科知识扩散网络路径识别研究进展[J]. 情报理论与实践, 2017, 40(8):139-144.
[18] 王菲菲,王筱涵,徐硕,等.基于三维引文关联网络的潜在知识流动探测——以基因编辑领域为例[J].情报学报,2021,40(2):184-193.
[19] 闵超, 张帅, 孙建军. 科学文献网络中的引文扩散——以2011年诺贝尔化学奖获奖论文为例[J]. 情报学报, 2020, 39(3):259-273.
[20] 陈柏彤, 张斌. 科学知识扩散研究框架[J]. 图书情报工作, 2014(15):48-57.
[21] ZHANG L, XU K, ZHAO J. Sleeping beauties in meme diffusion[J]. Scientometrics, 2017, 112(1):383-402.
[22] MIN C, DING Y, LI J, et al. Innovation or imitation:the diffusion of citations[J]. Journal of the Association for Information Science and Technology, 2018, 69(10):1271-1282.
[23] HE Z, LEI Z, WANG D. Modeling citation dynamics of "atypical" articles[J]. Journal of the Association for Information Science and Technology, 2018, 69(9):1148-1160.
[24] COPIELLO S. Peer and neighborhood effects:citation analysis using a spatial autoregressive model and pseudo-spatial data[J]. Journal of informetrics, 2019, 13(1):238-254.
[25] NIGEL GILBERT G. Referencing as persuasion[J]. Social studies of science, 1977, 7(1):113-122.
[26] 马凤,武夷山.关于论文引用动机的问卷调查研究——以中国期刊研究界和情报学界为例[J].情报杂志,2009,28(6):9-14,8.
[27] BEAVER D B. Does collaborative research have greater epistemic authority?[J]. Scientometrics, 2004, 60(3):399-408.
[28] 王黎明, 张啸岳, 俞立平. 论文作者数与被引频次关系的再思考[J]. 情报杂志, 2019, 38(9):166-170,157.
[29] SINATRA R, WANG D, DEVILLE P, et al. Quantifying the evolution of individual scientific impact[J]. Science, 2016, 354(6312):aaf5239.
[30] PETERSEN A M, FORTUNATO S, PAN R K, et al. Reputation and impact in academic careers[J]. Proceedings of the National Academy of Sciences, 2014, 111(43):15316-15321.
[31] WANG M, YU G, AN S, et al. Discovery of factors influencing citation impact based on a soft fuzzy rough set model[J]. Scientometrics, 2012, 93(3):635-644.
[32] WUCHTY S, JONES B F, UZZI B. The increasing dominance of teams in production of knowledge[J]. Science, 2007, 316(5827):1036-1039.
[33] BALL P. A longer paper gathers more citations[J]. Nature, 2008, 455(7211):274-275.
[34] BORNMANN L, SCHIER H, MARX W, et al. What factors determine citation counts of publications in chemistry besides their quality?[J]. Journal of informetrics, 2012, 6(1):11-18.
[35] 李长玲, 刘运梅, 牌艳欣. 基于学科差别的论文影响力评价指标特征分析及体系构建[J]. 情报资料工作, 2019, 40(6):23-29.
[36] VANCLAY J K. Factors affecting citation rates in environmental science[J]. Journal of informetrics, 2013, 7(2):265-271.
[37] BORNMANN L, LEYDESDORFF L, WANG J. How to improve the prediction based on citation impact percentiles for years shortly after the publication date?[J]. Journal of informetrics, 2014, 8(1):175-180.
[38] FALAGAS M E, ZARKALI A, KARAGEORGOPOULOS D E, et al. The impact of article length on the number of future citations:a bibliometric analysis of general medicine journals[J]. Plos one, 2013, 8(2):e49476.
[39] LISKIEWICZ T, LISKIEWICZ G, PACZESNY J. Factors affecting the citations of papers in tribology journals[J]. Scientometrics, 2021, 126(4):3321-3336.
[40] 姜磊, 林德明. 参考文献对论文被引频次的影响研究[J]. 科研管理, 2015, 36(1):121-126.
[41] WANG J, THIJS B, GLÄNZEL W. Interdisciplinarity and impact:distinct effects of variety, balance, and disparity[J]. Plos one, 2015, 10(5):e0127298.
[42] BORNMANN L. Does the normalized citation impact of universities profit from certain properties of their published documents-such as the number of authors and the impact factor of the publishing journals? a multilevel modeling approach[J]. Journal of informetrics, 2019, 13(1):170-184.
[43] JIANG S, CHEN H. Examining patterns of scientific knowledge diffusion based on knowledge cyber infrastructure:a multi-dimensional network approach[J]. Scientometrics, 2019, 121(3):1599-1617.
[44] BASS F M. Comments on "a new product growth for model consumer durables the bass model"[J]. Management science, 2004, 50(S):1833-1840.
[45] 陈立新, 刘则渊. 引文半衰期与普赖斯指数之间的数量关系研究[J]. 图书情报知识, 2007(1):25-28.
[46] GNEWUCH M, WOHLRABE K. Title characteristics and citations in economics[J]. Scientometrics, 2017,110(3):1573-1578.
[47] 陈悦, 宋超, 周京生, 等. 文献计量学视角下的论文被引频次影响因素研究——兼评使用与被引之间关系[J]. 情报杂志, 2019,38(4):96-104.
[48] 葛赵青, 苗凌, 赵大良, 等. 科技期刊参考文献数量与部分引证指标的定量关系初探[J]. 编辑学报, 2015,27(5):423-425.
[49] AZOULAY P. Small research teams ‘disrupt’ science more radically than large ones[J]. Nature, 2019, 566(7744):330-332.
[50] WU L, WANG D, EVANS J A. Large teams develop and small teams disrupt science and technology[J]. Nature, 2019,566(7744):378-382.