Chinese Research Academy of Environmental Sciences, Dayangfang 8, Chaoyang District, Beijing, 100012, China.
Faculty of Engineering and Physical Sciences, University of Southampton, Southampton, SO17 1BJ, United Kingdom.
Environ Sci Pollut Res Int. 2020 Jun;27(16):19265-19284. doi: 10.1007/s11356-020-08241-1. Epub 2020 Apr 8.
Metal-organic frameworks, an emerging class of porous material, have developed rapidly in recent years. In order to clarify the application of metal-organic frameworks in the field of environmental science, 1386 articles over the last 20 years were obtained from Scopus and analysed by the bibliometric method. And the collaboration between countries, institutions and authors and the co-occurrence of keywords were also conducted using VOSviewer. The results indicated that this area of research has entered a fast-developing stage. The number of articles published has grown from 7 articles in 1999 to 378 articles in 2018. The most productive country was China with 626 articles published. The most productive institution was the Chinese Academy of Sciences, and the most productive author was Jhung SH from Kyungpook National University of South Korea. Although metal-organic frameworks have been widely used in adsorption and catalytic degradation of pollutants from the environment, the removal mechanism of pollutants by MOFs, the stability improvement and the cost reduction of metal-organic frameworks are still the main challenges for their practical applications.
金属有机骨架作为一种新兴的多孔材料,近年来发展迅速。为了阐明金属有机骨架在环境科学领域的应用,本文从 Scopus 数据库中获取了过去 20 年的 1386 篇文章,并采用文献计量学方法进行分析。同时,还利用 VOSviewer 分析了国家、机构和作者之间的合作以及关键词的共现情况。结果表明,该研究领域已进入快速发展阶段。发表的文章数量从 1999 年的 7 篇增长到 2018 年的 378 篇。中国是发表文章最多的国家,有 626 篇文章。发表文章最多的机构是中国科学院,最有影响力的作者是韩国庆北国立大学的 Jhung SH 教授。尽管金属有机骨架已广泛应用于吸附和催化降解环境污染物,但 MOFs 对污染物的去除机制、金属有机骨架的稳定性提高和成本降低仍然是其实际应用的主要挑战。
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