首页|Scientometric analysis of research trends on solid oxide electrolysis cells for green hydrogen and syngas production

Scientometric analysis of research trends on solid oxide electrolysis cells for green hydrogen and syngas production

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Solid oxide electrolysis cell(SOEC)is a promising water electrolysis technology that produces hydrogen or syngas through water electrolysis or water and carbon dioxide co-electrolysis.Green hydrogen or syngas can be produced by SOEC with renewable energy.Thus,SOEC has attracted continuous attention in recent years for the urgency of developing environmentally friendly energy sources and achieving carbon neutrality.Focusing on 1276 related articles retrieved from the Web of Science(WoS)database,the historical development of SOECs are depicted from 1983 to 2023 in this paper.The co-occurrence networks of the countries,source journals,and author keywords are generated.Moreover,three main clusters showing different content of the SOEC research are identified and analyzed.Furthermore,the scientometric analysis and the content of the high-cited articles of the research of different topics of SOECs:fuel electrode,air electrode,electrolyte,co-electrolysis,proton-conducting SOECs,and the modeling of SOECs are also presented.The results show that co-electrolysis and proton-conducting SOECs are two popular directions in the study of SOECs.This paper provides a straightforward reference for researchers interested in the field of SOEC research,helping them navigate the landscape of this area of study,locate potential partners,secure funding,discover influential scholars,identify leading countries,and access key research publications.

solid oxide electrolysis cell(SOEC)scientometric reviewknowledge networkmaterial developmentH2O-CO2 co-electrolysismodeling

Shimeng Kang、Zehua Pan、Jinjie Guo、Yexin Zhou、Jingyi Wang、Liangdong Fan、Chunhua Zheng、Suk Won Cha、Zheng Zhong

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School of Science,Harbin Institute of Technology,Shenzhen 518055,China

Department of New Energy Science and Technology,College of Chemistry and Environmental Engineering,Shenzhen University,Shenzhen 518060,China

Shenzhen Institute of Advanced Technology,Chinese Academy of Sciences,Shenzhen 518055,China

Department of Mechanical Engineering,Seoul National University,Seoul 08826,Republic of Korea

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2024

能源前沿
高等教育出版社

能源前沿

CSTPCDEI
影响因子:0.2
ISSN:2095-1701
年,卷(期):2024.18(5)