作者:Jiaxiang Sun,Rongzheng Ren,Hualiang Yue,Wencan Cui,Gaige Wang,Chunming Xu,Jinshuo Qiao,Wang Sun,Kening Sun,Zhenhua Wang (Beijing Key Laboratory for Chemical Power Source and Green Catalysis, School of Chemistry and Chemical Engineering, Beijing Institute of Technology)
出处:Chinese Chemical Letters 2023
关键词:High-entropy;perovskite;oxide Triple-conducting;oxide;Air;electrode;Reversible;protonic;ceramic;cells;Hydrogen;production
摘要:Reversible protonic ceramic cells (RPCCs) show great potential as new-generation energy conversion and storage devices.However, the mature development ...
作者:Tingting Li1;Jinshuo Qiao1;
出处:Ceramics International 2020
关键词:Flue gas;Proton conductor;Solid oxide fuel cell;NO decomposition
摘要:Proton conducting solid oxide fuel cells (H–SOFCs) with BaZr0·1Ce0·7Y0·2O3-δ as electrolyte were fabricate ...
作者:Chunming Xu;Lihong Zhang;Wang Sun;Rongzheng Ren;... Kening Sun (Beijing Key Laboratory of Chemical Power Source and Green Catalysis, Beijing Institute of Technology, Beijing, 100081, People\'s Republic of ChinaBeijing Key Laboratory for Chemical Power Source and Green Catalysis, Beijing Institute of Technology, Beijing, 100081, People\'s Republic of China)
出处:Journal of Power Sources 2023
关键词:Solid oxide electrolytic cells;Perovskite oxides;CO2 reduction;Three-dimensional nanotubes
摘要:Solid oxide electrolytic cells (SOEC) have great potential in CO2 conversion and energy storage. However, commercial application of SOEC is ...
作者:Xiangjun Chen;Jinshuo Qiao;Zhenhua Wang;Wang Sun;Kening Sun (Beijing Key Laboratory for Chemical Power Source and Green Catalysis, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing, 100081, ChinaBeijing Key Laboratory for Chemical Power Source and Green Catalysis, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing, 100081, China)
出处:Journal of Alloys and Compounds 2023
摘要:The performance and stability of direct carbon solid oxide fuel cells (DCSOFCs) are severely affected by the electrocatalytic activity of their anode ...
作者:乔金硕,张琪,陈湘君,翟雪,孙旺 (北京理工大学化学与化工学院)
出处:实验技术与管理 2023
关键词:直接乙醇燃料电池;Pt/C催化剂;Pt-Fe/纳米碳;Pt-Co/纳米碳;核壳结构
摘要:为优化直接乙醇燃料电池的阴极催化剂,该文采用化学还原一步法分别制备出以活性炭、纳米碳和多壁碳纳米管为载体的Pt/C催化剂,研究了载体对催化剂性能的影响,并确定纳米碳为最优载体。以纳米碳为载体,采用相同工艺制备出具有核壳结构的Pt-Fe和Pt-Co合金催化剂,将其与Pt/纳米碳催化剂进行对比分析,探究 ...
发明人:乔金硕,孙克宁,郭祥,王振华,孙旺
申请日期:2023.07.25
摘要:本发明公开了一种半自动薄膜磨片机,其包括机体和样品,机体内设置有调速电动机,调速电动机的输出轴穿过机体并延伸至机体外,且输出轴的端部上活动设置有旋转平台,机体的顶部活动设置有施压金属台,施压金属台的下表面通过施压组件设置有活动起降台,活动起降台的底部活动设置有硬橡胶,硬橡胶与旋转平台上下同轴对立,样 ...
作者:Meixiu Qu1,2;Yu Bai1,2;
出处:Electrochimica Acta 2021
关键词:Lithium-sulfur batteries;Three-dimensional graphene;CoO/C polyhedron;High-loading cathodes
摘要:The lithium-sulfur (Li-S) battery is recognized as one of the most advanced batteries with superior theoretical energy density. Nevertheless, the indu ...
作者:Luo, Min1, 2; Bai, Yu1, 2; Sun, Rui1, 2; Qu, Meixiu1, 2; Wang, Mengyuan1, 2; Yang, Zhanfeng1, 2; Wang, Zhenhua2; Sun, Wang2; Sun, Kening2; (1Advanced Research Institute of Multidisciplinary Science, Beijing Institute of Technology, Beijing; 100081, China;2Beijing Key Laboratory for Chemical Power Source and Green Catalysis, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing; 100081, China)
出处:Journal of Energy Chemistry 2022
关键词:Cobalt nitride;Nitrogen vacancy;Redox kinetics;Separators;Li-S batteries
摘要:While lithium-sulfur (Li-S) battery has attracted remarkable attention owing to the high theoretical capacity, its practical application is still hind ...
作者:Ren, Rongzheng1;Yu, Xiaodan1;Wang, Zhenhua1;Xu, Chunming1;Song, Tinglu2;Sun, Wang1;Qiao, Jinshuo1;Sun, Kening1; (1Beijing Key Laboratory for Chemical Power Source and Green Catalysis, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing; 100081, China;2Experimental Center of Advanced Materials School of Materials Science & Engineering, Beijing Institute of Technology, Beijing; 100081, China)
出处:Applied Catalysis B: Environmental 2022
关键词:OXYGEN REDUCTION REACTION;PLANE-WAVE;PERFORMANCE;ELECTRODE
摘要:Protonic ceramic fuel cells (PCFCs) have generated significant interest due to their weak temperature dependence and efficient energy conversion. Howev ...
作者:张俊杰1;,孙旺1,2;,高啸天1,2;,乔金硕1,2;,王振华1,2;,孙克宁1,2; (1北京理工大学化学与化工学院;2北京理工大学化学电源与绿色催化北京市重点实验室)
出处:化工学报 2023
关键词:电解;制氢;固体氧化物电解池;电极材料;系统;产业化进展
摘要:随着双碳目标和能源革命的持续推进,氢能作为重要的清洁能源受到广泛关注。在众多的制氢途径中,固体氧化物电解池(solid oxide electrolytic cell, SOEC)电解水制氢被认为是最有前景的制氢途径之一。为更好地服务SOEC电解水制氢的产业化发展,对SOEC技术的研究现状和面临的挑 ...