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研究光催化析氢科学合作网络中的学科交互作用:特征与动态。

Research disciplinary interactions on scientific collaboration network in photocatalytic hydrogen evolution: Characteristics and dynamics.

机构信息

School of Public Policy and Administration, Nanchang University, Nanchang, Jiangxi, The People's Republic of China.

出版信息

PLoS One. 2022 Apr 14;17(4):e0266404. doi: 10.1371/journal.pone.0266404. eCollection 2022.

Abstract

Interdisciplinary scientific collaboration promotes the innovative development of scientific research. Photocatalytic hydrogen evolution (PHE) is a typical interdisciplinary subject. This study aims to explore the characteristics of discipline interaction and the temporal evolution in the field. Bibliometric analysis could be used to understand the stage of research in a particular subject. In this work, the publications on the topic in Web of Science (WoS) platform from 1999 to 2020 were selected. On the basis of social network theory, the characteristics of interdisciplinary were revealed from three perspectives. First, the disciplinary interaction network is constructed through disciplinary co-occurrence to detect the characteristics of interaction structure among different disciplines. Then the node centrality index is employed to explore the influence of disciplines in the interactive network by using network centrality analysis. Moreover, the dynamic of discipline interaction evolution is studied using blockmodeling analysis. In the field of PHE, the number of disciplines and the intensity of interaction among different subjects gradually increased in the past 20 years. Chemistry and Material Sciences are the core discipline, and they play an important role in the network. The whole network is divided into different discipline groups. The scale of the discipline group is becoming large, and the disciplinary interaction is becoming more complex. The obtained results are helpful for guiding scholars to carry out interdisciplinary interaction. The methods of detecting interdisciplinary interactive relationship could provide paths for interdisciplinary research in other fields.

摘要

跨学科科学合作促进了科学研究的创新发展。光催化制氢(PHE)是一个典型的跨学科领域。本研究旨在探索该领域学科互动的特征和时间演化。文献计量分析可用于了解特定主题研究的阶段。在这项工作中,选取了 Web of Science(WoS)平台上 1999 年至 2020 年关于该主题的出版物。基于社会网络理论,从三个角度揭示了跨学科的特征。首先,通过学科共现构建学科互动网络,以检测不同学科之间互动结构的特征。然后,通过网络中心性分析利用节点中心性指标来探索互动网络中学科的影响力。此外,还使用模块分析研究了学科互动演化的动态。在 PHE 领域,过去 20 年来,学科数量和不同主体之间的互动强度逐渐增加。化学和材料科学是核心学科,它们在网络中起着重要作用。整个网络被分为不同的学科组。学科组的规模越来越大,学科互动也越来越复杂。所得结果有助于指导学者开展跨学科互动。检测跨学科互动关系的方法可为其他领域的跨学科研究提供途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8a18/9009704/f061b337251f/pone.0266404.g001.jpg

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