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纳米颗粒与植物相互作用研究的知识领域及新兴趋势:一项科学计量分析。

Knowledge domain and emerging trends in nanoparticles and plants interaction research: A scientometric analysis.

作者信息

Zeb Aurang, Liu Weitao, Wu Jiani, Lian Jiapan, Lian Yuhang

机构信息

MOE Key Laboratory of Pollution Processes and Environmental Criteria, Tianjin Key Laboratory of Urban Ecology Environmental Remediation and Pollution Control, College of Environmental Science and Engineering, Nankai University, Tianjin 300350, PR China.

MOE Key Laboratory of Pollution Processes and Environmental Criteria, Tianjin Key Laboratory of Urban Ecology Environmental Remediation and Pollution Control, College of Environmental Science and Engineering, Nankai University, Tianjin 300350, PR China.

出版信息

NanoImpact. 2021 Jan;21:100278. doi: 10.1016/j.impact.2020.100278. Epub 2020 Nov 24.

Abstract

The potential releases of nanoparticles (NPs) into soil medium have drawn considerable attention due to the increasing production and application of NPs worldwide. Understanding the interactions between NPs and plants is particularly important to assess the risks of NPs in the soil ecosystem. Although important knowledge has been gained about the NPs-plants interactions, current results of numerous published articles are still scattered. Therefore, this paper reviews the scientific progress in the NPs-plants interactions via a scientometric analysis to identify the main gaps and to provide future perspectives. Scientific documents on the interaction of nanoparticles and plant research during the period January 2000-July 2020 have been collected from Web of Science core collection and analyzed using CiteSpace. Overall, 9 scientometric indicators, i.e. literature quantity and growth trend, contributing countries, authors, institutions, keywords, cited journals, cited authors, and cited articles, are employed to understand the results retrieved from the 961 documents collected. The number of studies on nano-plant interaction research has been growing at an average annual rate of 56%. 71 countries and around 3380 authors have contributed to this field. Among the cited journals, Environmental Science and Technology stands out as the most-cited journal followed by Science of the Total Environment and Environmental Pollution, respectively. Moreover, the keyword citation burst, an indicator of the most active area of research or emerging trend, indicates that the beneficial side of nanoparticles and the trophic transfer require further exploration. This paper will be beneficial for fully understanding the salient research themes and the research trends of nano-plant interaction in future.

摘要

由于全球范围内纳米颗粒(NPs)产量和应用的不断增加,其向土壤介质中的潜在释放已引起了相当大的关注。了解纳米颗粒与植物之间的相互作用对于评估纳米颗粒在土壤生态系统中的风险尤为重要。尽管已经获得了关于纳米颗粒与植物相互作用的重要知识,但众多已发表文章的当前结果仍然分散。因此,本文通过科学计量分析回顾了纳米颗粒与植物相互作用的科学进展,以识别主要差距并提供未来展望。从科学引文索引核心合集收集了2000年1月至2020年7月期间关于纳米颗粒与植物相互作用研究的科学文献,并使用CiteSpace进行分析。总体而言,采用了9个科学计量指标,即文献数量和增长趋势、贡献国家、作者、机构、关键词、被引期刊、被引作者和被引文章,以了解从收集的961篇文献中检索到的结果。纳米植物相互作用研究的数量以年均56%的速度增长。71个国家和约3380名作者为该领域做出了贡献。在被引期刊中,《环境科学与技术》最为突出,其次分别是《总体环境科学》和《环境污染》。此外,关键词引用爆发是研究最活跃领域或新兴趋势的指标,表明纳米颗粒的有益方面和营养转移需要进一步探索。本文将有助于全面了解未来纳米植物相互作用的突出研究主题和研究趋势。

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