利用VOSVIEWER对Bi2O3纳米粒子发表的文献计量计算映射分析

Muhamad Daffa Putra
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引用次数: 0

摘要

本研究通过文献计量学方法和VOSviewer的计算映射分析,考察了氧化铋纳米颗粒的研究进展。期刊文章数据是使用Publish or Perish应用程序从b谷歌Scholar数据库中获得的。用于搜索相关期刊的关键词是Bi2O3,纳米颗粒,化学,氧化铋。与关键词相关的期刊文章998篇。从b谷歌Scholar数据库中检索的期刊文章范围是最近10年(2012 - 2022)。结果表明,所研究的Bi2O3纳米颗粒可分为纳米颗粒、Bi2O3、氧化铋3大类。包含在簇3中的纳米粒子术语,共有186个链接,总链接强度为812,出现次数为163次。第二项是Bi2O3,属于簇7,共有213个链接,总链接强度为1550,出现次数为189次;氧化铋项属于簇4,共有230个链接,总链接强度为2080,出现次数为401次。对近10年研究发展的分析结果显示出轻微的波动。2012 - 2013年,研究数量从34项增加到62项(28项研究)。然而,在2013年至2016年,从62个减少到53个(9项研究)。2016 - 2022年再次经历了从53项到152项的显著增长(99项研究)。随着本研究的结果,Bi2O3纳米颗粒研究的发展表明,这一研究有很大的机会,可以再次探索。
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BIBLIOMETRIC COMPUTATIONAL MAPPING ANALYSIS OF PUBLICATION ON Bi2O3 NANOPARTICLES USING VOSVIEWER
This study examines the development of research on bismuth oxide (Bi2O3) nanoparticles through a bibliometric approach with computational mapping analysis using VOSviewer. Journal article data was obtained from the Google Scholar database using the Publish or Perish application. The keywords used to search related journals are Bi2O3, nanoparticles, chemistry, bismuth oxide. There were 998 journal articles related to keywords. The range of journal articles searched from the Google Scholar database is the last 10 years (2012 – 2022). The results show that research Bi2O3 nanoparticles can be separated into 3 terms: nanoparticle, Bi2O3, bismuth oxide. Nanoparticle term which is included in cluster 3 with 186 links total, 812 total link strength, and 163 occurrences. The second term is Bi2O3 which belongs to cluster 7 with a total of 213 links, a total link strength of 1550, and occurrences of 189 and a bismuth oxide term which belongs to cluster 4 with a total of 230 links, a total link strength of 2080, and 401 occurrences. The results of the analysis of research developments in the last 10 years show a slight fluctuation. In 2012 – 2013 there was an increase in the number of studies from 34 to 62 (28 studies). However, in 2013 – 2016 it decreased from 62 to 53 (9 studies). In 2016 – 2022 again experienced a significant increase from 53 to 152 (99 studies). With the results of this study, the development of research on Bi2O3 nanoparticles shows that this research has great opportunities that can be explored again.
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