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典型文献
Ultra-small platinum nanoparticles segregated by nickle sites for efficient ORR and HER processes
文献摘要:
In the electrochemical process,Pt nanoparticles (NPs) in Pt-based catalysts usually agglomerate due to Oswald ripening or lack of restraint,ultimately resulting in reduction of the active sites and catalytic effi-ciency.How to uniformly disperse and firmly fix Pt NPs on carbon matrix with suitable particle size for catalysis is still a big challenge.Herein,to prevent the agglomeration and shedding of Pt NPs,Ni species is introduced and are evenly dispersed in the surface of carbon matrix in the form of Ni-N-C active sites (Ni ZIF-NC).The Ni sites can be used to anchor Pt NPs,and then effectively limit the further growth and agglomeration of Pt NPs during the reaction process.Compared with commercial Pt/C catalyst,Pt@Ni ZIF-NC,with ultralow Pt loading (7 wt%) and ideal particle size (2.3 nm),not only increases the active center,but also promotes the catalysis kinetics,greatly improving the ORR and HER catalytic activity.Under acidic conditions,its half-wave potential (0.902 V) is superior to commercial Pt/C (0.861 V),and the mass activity (0.38 A per mg Pt) at 0.9 V is 4.7 times that of Pt/C (0.08 A per mg Pt).Besides,it also shows outstanding HER performance.At 20 and 30 mV,its mass activity is even 2 and 6 times that of Pt/C,respectively.Whether it is under ORR or HER conditions,it still shows excellent durability.These undoubtedly indicate the realization of dual-functional catalysts with low-Pt and high-efficiency properties.
文献关键词:
作者姓名:
Lvhan Liang;Huihui jin;Huang Zhou;Bingshuai Liu;Chenxi Hu;Ding Chen;Jiawei Zhu;Zhe Wang;Hai-Wen Li;Suli Liu;Daping He;Shichun Mu
作者机构:
State Key Laboratory of Advanced Technology for Materials Synthesis and Processing,Wuhan University of Technology,Wuhan 430070,Hubei,China;Foshan Xianhu Laboratory of the Advanced Energy Science and Technology,Guangdong Laboratory,Xianhu Hydrogen Valley,Foshan 528200,Guangdong,China;Hubei Engineering Research Center of RF-Microwave Technology and Application,Wuhan University of Technology,Wuhan 430070,Hubei,China;Platform of Inter/Transdisciplinary Energy Research,International Research Center for Hydrogen Energy,International Institute for Carbon-Neutral Energy Research,Yushu University,Fukuoka 819-0395,Japan;Key Laboratory of Advanced Functional Materials of Nanjing,Nanjing Xiaozhuang University,Nanjing 211171,Jiangsu,China
文献出处:
引用格式:
[1]Lvhan Liang;Huihui jin;Huang Zhou;Bingshuai Liu;Chenxi Hu;Ding Chen;Jiawei Zhu;Zhe Wang;Hai-Wen Li;Suli Liu;Daping He;Shichun Mu-.Ultra-small platinum nanoparticles segregated by nickle sites for efficient ORR and HER processes)[J].能源化学,2022(02):48-54
A类:
nickle
B类:
Ultra,small,platinum,nanoparticles,segregated,by,sites,efficient,ORR,HER,processes,In,electrochemical,Pt,NPs,catalysts,usually,agglomerate,due,Oswald,ripening,lack,restraint,ultimately,resulting,reduction,active,catalytic,How,uniformly,firmly,fix,carbon,matrix,suitable,size,catalysis,still,big,challenge,Herein,prevent,agglomeration,shedding,species,introduced,evenly,dispersed,surface,ZIF,NC,can,be,used,anchor,then,effectively,limit,further,growth,during,reaction,Compared,commercial,ultralow,loading,ideal,not,only,increases,center,but,also,promotes,kinetics,greatly,improving,activity,Under,acidic,conditions,its,half,wave,potential,superior,mass,times,that,Besides,shows,outstanding,performance,At,mV,respectively,Whether,under,excellent,durability,These,undoubtedly,indicate,realization,dual,functional,high,efficiency,properties
AB值:
0.526635
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