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Evaluation of Scholar’s Contribution to Team Based on Weighted Co-author Network
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作者 xinmeng zhang Xinguang Li +2 位作者 Shengyi Jiang Xia Li Bolin Xie 《国际计算机前沿大会会议论文集》 2019年第1期59-61,共3页
The contributions of scientific researchers include personal influence and talent training achievements. In this paper, using 9964 high-quality coauthor scientific papers in English teaching research from China citati... The contributions of scientific researchers include personal influence and talent training achievements. In this paper, using 9964 high-quality coauthor scientific papers in English teaching research from China citation database from 1997 to 2016, a weighted coauthor network with variety factors is constructed. A model was proposed to calculate the author’s contribution to the research team by combining personal and network characteristics. The results reveal a variety of characteristics of the co-author networks in English teaching research field, including statistical properties, community features, and authors’ contribution to teams in this discipline. 展开更多
关键词 Social NETWORK analysis CO-AUTHOR NETWORK Research TEAM ACADEMIC CONTRIBUTION
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SnO/SnO_(2) heterojunction:an alternative candidate for sensing NO_(2) with fast response at room temperature
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作者 Pengtao WANG Wanyin GE +3 位作者 Xiaohua JIA Jingtao HUANG xinmeng zhang Jing LU 《Frontiers of Materials Science》 SCIE CSCD 2022年第3期193-202,共10页
The SnO_(2)-based family is a traditional but important gas-sensitive material.However,the requirement for high working temperature limits its practical application.Much work has been done to explore ways to improve i... The SnO_(2)-based family is a traditional but important gas-sensitive material.However,the requirement for high working temperature limits its practical application.Much work has been done to explore ways to improve its gas-sensing performance at room temperature(RT).For this report,SnO_(2),SnO,and SnO/SnO_(2) heterojunction was successfully synthesized by a facile hydrothermal combined with subsequent calcination.Pure SnO_(2) requires a high operating temperature(145℃),while SnO/SnO_(2) heterojunction exhibits an excellent performance for sensing NO_(2) at RT.Moreover,SnO/SnO_(2) exhibits a fast response,of 32 s,to 50 ppm NO_(2) at RT(27℃),which is much faster than that of SnO(139 s).The superior sensing properties of SnO/SnO_(2) heterojunction are attributed to the unique hierarchical structures,large number of adsorption sites,and enhanced electron transport.Our results show that SnO/SnO_(2) heterojunction can be used as a promising high-performance NO_(2) sensitive material at RT. 展开更多
关键词 SNO SnO_(2) HETEROSTRUCTURE NO_(2) roomtemperature
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