应用化学 ›› 2023, Vol. 40 ›› Issue (10): 1448-1455.DOI: 10.19894/j.issn.1000-0518.230146

• 信息动态 • 上一篇    

基于文献计量的氧化石墨烯特征分析

夏昉, 许子英, 王赫, 赫玉芳()   

  1. 长春中医药大学健康管理学院,长春 130117
  • 收稿日期:2023-05-16 接受日期:2023-07-11 出版日期:2023-10-01 发布日期:2023-10-13
  • 通讯作者: 赫玉芳
  • 基金资助:
    吉林省科技发展计划项目(20230401060YY)

Graphene Oxide Characterization Based on Bibliometrics

Fang XIA, Zi-Ying XU, He WANG, Yu-Fang HE()   

  1. School of Health Management,Changchun University of Chinese Medicine,Changchun 130117,China
  • Received:2023-05-16 Accepted:2023-07-11 Published:2023-10-01 Online:2023-10-13
  • Contact: Yu-Fang HE
  • About author:hyf_1992@163.com
  • Supported by:
    Jilin Province Science and Technology Development Plan Project(20230401060YY)

摘要:

围绕氧化石墨烯(GO)现状进行系统的文献计量和可视化分析,探索GO领域的发展现状、研究热点与前沿动态。以中国知网数据库为数据源,检索相关GO氧化石墨烯的文献,使用文献计量学方法进行统计分析。共纳入2728篇文献,氧化石墨烯的研究呈现“上升-缓慢下降”趋势; 文献产出量相对较高的机构为理工类院校,表明该研究领域的专业化与集约化程度较高; 关键词形成以氧化石墨烯基础研究、GO的制备与还原、光催化性能研究、电化学性能研究以及力学性能研究为聚类的5类,充分运用GO特征分析描述该领域的研究热点; GO研究的前沿有: 寻找更多的聚合物与GO的合成方式以提升复合材料电化学性能,GO复合材料吸附污染物进行污水处理,采用电化学还原法利用GO来制备石墨烯。近年来,GO性能优良且应用广泛,值得相关研究人员进一步探索,以扩大其在环境和化学领域的应用。

关键词: 氧化石墨烯, 性能, 可视化分析, 研究热点

Abstract:

This paper aimed to conduct systematic bibliometric and visual analysis of graphene oxide(GO) status, and to explore the development status, research hotspots and frontier trends. CNKI database was used as the data source to retrieve the literature related to GO, and the bibliometric method was used for statistical analysis. A total of 2728 articles were included in this study, and the relevant studies showed a trend of “rising-slow decline”. The institutions with relatively high literature output are science and engineering colleges, indicating that the degree of specialization and intensification in this research field is relatively high. The keywords formed five categories, which were clustered by basic research on GO, preparation and reduction of GO, photocatalytic performance, electrochemical performance and mechanical properties, and made full use of GO characteristic analysis to describe the research hotspots in this field. The frontiers of GO research include: finding more ways to synthesize polymers and GO to improve the electrochemical performance of composites, GO composites adsorbing pollutants for sewage treatment, and using electrochemical reduction to prepare graphene using GO. GO has been widely used and has excellent performance in recent years, which is worthy of further exploration by relevant researchers to expand its application in the field of environment and chemistry.

Key words: Graphene oxide, Performance, Visual analysis, Research hotspots

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