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降低直接甲醇燃料电池浓差极化的含磺化碳管阻水夹层的构建 被引量:1
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作者 刘杰 李金晟 +4 位作者 柏景森 金钊 葛君杰 刘长鹏 邢巍 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2022年第11期165-170,共6页
采用直接接枝法,将来自对氨基苯磺酸的苯磺酸官能团引入氧化多壁碳纳米管,制得磺化多壁碳纳米管(SO_(3)-MCNT).再以SO_(3)-MCNT为填料,以Nafion离聚物为黏结剂,利用超声喷涂在商业N212质子交换膜一侧构建了新的膜层,获得了一种复合膜(SO... 采用直接接枝法,将来自对氨基苯磺酸的苯磺酸官能团引入氧化多壁碳纳米管,制得磺化多壁碳纳米管(SO_(3)-MCNT).再以SO_(3)-MCNT为填料,以Nafion离聚物为黏结剂,利用超声喷涂在商业N212质子交换膜一侧构建了新的膜层,获得了一种复合膜(SO_(3)-MCNT-N212).使用SO_(3)-MCNT-N212制备燃料电池膜电极(MEA),并用于直接甲醇燃料电池(DMFC)测试.与使用普通N212膜的膜电极相比,该膜电极的性能得到明显提升.进一步分析表明,SO_(3)-MCNT膜层的引入降低了阳极向阴极的跨膜水迁移作用,缓解了阴极的水淹,从而降低了浓差极化,提升了膜电极的性能. 展开更多
关键词 直接甲醇燃料电池 质子交换膜 磺化多壁碳纳米管 浓差极化 水管理
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Advanced Pt‐based intermetallic nanocrystals for the oxygen reduction reaction 被引量:5
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作者 Jingsen Bai Liting Yang +2 位作者 Zhao Jin Junjie Ge Wei Xing 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第6期1444-1458,共15页
Proton exchange membrane fuel cells(PEMFCs)are considered ideal energy‐conversion devices because of their environmentally friendly nature and high theoretical energy efficiency.However,cathodic polarization,which is... Proton exchange membrane fuel cells(PEMFCs)are considered ideal energy‐conversion devices because of their environmentally friendly nature and high theoretical energy efficiency.However,cathodic polarization,which is a result of the sluggish oxygen reduction reaction(ORR)kinetics,is a significant source of energy loss and reduces fuel cell efficiency.Further,the need to use Pt in commercial Pt/C cathodes has restricted their large‐scale application in fuel cells because of its high cost and poor durability.Thus,improvements in the activity and durability of Pt‐based catalyst are required to reduce the amount of Pt required and,thus,costs,while increasing the ORR rate and fuel cell power density and promoting widespread PEMFC commercialization.In recent years,atomically ordered Pt‐based intermetallic nanocrystals have received tremendous attention owing to their excellent activity and stability for the ORR.Therefore,in this review,we first introduce the formation of intermetallic compounds from the perspective of thermodynamics and kinetics to lay a theoretical foundation for the design of these compounds.In addition,optimization strategies for Pt‐based ordered intermetallic catalysts are summarized in terms of the catalyst composition,size,and morphology.Finally,we conclude with a discussion of the current challenges and future prospects of Pt‐based ordered alloys.This review is designed to help readers gain insights into the recent developments in and rational design of Pt‐based intermetallic nanocrystals for the ORR and encourage research that will enable the commercialization of PEMFCs. 展开更多
关键词 Oxygen reduction reaction Fuel cell Pt‐based catalyst INTERMETALLIC ELECTROCATALYSIS
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