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高能电子辐照对双向拉伸聚丙烯薄膜的微观结构及介电性能影响 被引量:4
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作者 冯宇 何梓源 +3 位作者 杨智捷 盛捷 迟庆国 陈庆国 《中国电机工程学报》 EI CSCD 北大核心 2022年第22期8405-8414,共10页
探究辐照环境下电介质材料的微观结构及介电性能变化规律,对于应用在辐照环境下电介质材料具有重要的应用价值。该文以双向拉伸聚丙烯(biaxiallyoriented polypropylene,BOPP)薄膜作为研究对象,对BOPP进行不同能量的高能电子辐照(5、10... 探究辐照环境下电介质材料的微观结构及介电性能变化规律,对于应用在辐照环境下电介质材料具有重要的应用价值。该文以双向拉伸聚丙烯(biaxiallyoriented polypropylene,BOPP)薄膜作为研究对象,对BOPP进行不同能量的高能电子辐照(5、10、15和20Me V)。通过X射线衍射、差示扫描量热法、傅里叶红外光谱和X射线光电子能谱对BOPP的微观结构进行表征,并利用宽频介电谱仪和精密直流电源获得BOPP的介电性能。研究表明,高能电子辐照引起BOPP的主链断裂,生成含氧官能团(C—O)与羰基。随着电子束能量的增强,BOPP薄膜内部单位体积分子数减小,使得其介电常数降低;且辐照后BOPP发生氧化裂解反应,产生大量导电离子,导致电导损耗增加,而生成的极性端基使得松弛损耗增加,这是介电损耗增加的原因;同时,内部结构的解离与表面缺陷的增加,使其击穿场强降低。该文探究BOPP在高能电子辐照下微观结构以及介电性能变化规律,为辐照环境下电介质材料的发展提供参考。 展开更多
关键词 高能电子辐照 双向拉伸聚丙烯薄膜 介电性能 微观结构 氧化裂解反应
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Iridium‐containing water‐oxidation catalysts in acidic electrolyte 被引量:16
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作者 Yipu Liu Xiao Liang +4 位作者 Hui Chen Ruiqin Gao Lei Shi Lan Yang Xiaoxin Zou 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第7期1054-1077,共24页
With the goal of constructing a carbon‐free energy cycle,proton‐exchange membrane(PEM)water electrolysis is a promising technology that can be integrated effectively with renewable energy resources to produce high‐... With the goal of constructing a carbon‐free energy cycle,proton‐exchange membrane(PEM)water electrolysis is a promising technology that can be integrated effectively with renewable energy resources to produce high‐purity hydrogen.IrO2,as a commercial electrocatalyst for the anode side of a PEM water electrolyzer,can both overcome the high corrosion conditions and exhibit efficient catalytic performance.However,the high consumption of Ir species cannot meet the sustainable development and economic requirements of this technology.Accordingly,it is necessary to understand the OER catalytic mechanisms for Ir species,further designing new types of low‐iridium catalysts with high activity and stability to replace IrO2.In this review,we first summarize the related catalytic mechanisms of the acidic oxygen evolution reaction(OER),and then provide general methods for measuring the catalytic performance of materials.Second,we present the structural evolution results of crystalline IrO2 and amorphous IrOx using in situ characterization techniques under catalytic conditions to understand the common catalytic characteristics of the materials and the possible factors affecting the structural evolution characteristics.Furthermore,we focus on three types of common low‐iridium catalysts,including heteroatom‐doped IrO2(IrOx)‐based catalysts,perovskite‐type iridium‐based catalysts,and pyrochlore‐type iridium‐based catalysts,and try to correlate the structural features with the intrinsic catalytic performance of materials.Finally,at the end of the review,we present the unresolved problems and challenges in this field in an attempt to develop effective strategies to further balance the catalytic activity and stability of materials under acidic OER catalytic conditions. 展开更多
关键词 ELECTROCATALYSIS Oxygen evolution reaction Water splitting IRIDIUM Proton exchange membrane ELECTROLYZER
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