与金属有机框架(MOFs)耦合的酶生物传感器的趋势和机遇:一个先进的文献计量分析

M. B. Sales, J. G. L. Neto, A. K. de Sousa Braz, P. G. de Sousa Junior, R. Melo, Robert Valerio, J. Serpa, Ana Michele da Silva Lima, Rita Karolinny Chaves de Lima, A. P. Guimarães, M. C. M. de Souza, A. Lopes, M. A. Rios, Leonardo F. Serafim, J. C. D. dos Santos
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引用次数: 4

摘要

近几十年来,金属有机骨架材料以其大表面积和高孔隙率等独特的性能引起了人们的广泛关注。由于这些相同的特性,mof是开发高效生物传感器的一种很有前途的材料。本文献计量学分析侧重于mof作为酶偶联材料在生物传感器构建中的应用,旨在通过分析收集的数据库对该研究领域进行全面概述。分析包括确定发表最多的国家、最突出的应用以及该领域未来方向的趋势。该研究使用了三个数据库,其中包含不同数量的文档,根据研究领域进行区分,并根据需要对搜索进行了改进。结果表明,mof衍生的生物传感器是一个不断发展的领域,中国正在成为该领域研究的重要贡献者。该研究还使用趋势分析和地理编码的计算处理来揭示这些发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trends and Opportunities in Enzyme Biosensors Coupled to Metal-Organic Frameworks (MOFs): An Advanced Bibliometric Analysis
The unique properties of metal-organic frameworks (MOFs) such as their large surface area and high porosity have attracted considerable attention in recent decades. The MOFs are a promising class of materials for developing highly efficient biosensors due to these same properties. This bibliometric analysis focused on the use of MOFs as enzyme-coupled materials in biosensor construction and aimed to provide a comprehensive overview of the research field by analyzing a collected database. The analysis included identifying the countries that have published the most, the most prominent applications, and trends for future directions in the field. The study used three databases with different numbers of documents, differentiated by research areas, with refinements made to the search as needed. The results suggest that MOF-derived biosensors are a growing field, with the Republic of China emerging as a significant contributor to research in this area. The study also used computational processing of trend analysis and geocoding to reveal these findings.
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CiteScore
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