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典型文献
Regulating Ni site in NiV LDH for efficient electrocatalytic production of formate and hydrogen by glycerol electrolysis
文献摘要:
Energy-saving glycerol electrolysis with lower potential than water spitting endows a promising way for the concurrent production of value-added formate and high-purity hydrogen.However,there is still lack of effi-cient electrocatalysts at both anode and cathode for glyc-erol electrolysis.Herein,we report the activation of Ni site in NiV layered double hydroxide(LDH)by electrochemi-cal and N2/H2 plasma regulations for boosting the activity of glycerol oxidation reaction(GOR)and hydrogen evo-lution reaction(HER),respectively.Specifically,boosted GOR performance with a low overpotential(1.23 V at 10 mA·cm-2)and a high Faradic efficiency(94%)is demonstrated by electrochemically regulated NiV LDH(E-NiV LDH)with elevated valence state of Ni site.In situ Raman spectrum reveals the generation of Ni(Ⅲ)species by electrochemical regulation,and the highly active Ni(Ⅲ)can be regenerated with the process of electrochemical oxidation.Additionally,the possible reaction pathway is speculated based on the in situ Fourier transform infrared spectroscopy(FTIR)and high-performance liquid chro-matography results.The plasma-regulated NiV LDH(P-NiV LDH)with lower valence state of Ni site exhibits outstanding HER activity,displaying a low overpotential of 45 mV to deliver 10 mA·cm-2.When employing E-NiV LDH and P-NiV LDH as anode and cathode electrocata-lyst,respectively,the assembled electrolyzer merely needs 1.25 V to achieve 10 mA·cm-2 for simultaneous produc-tion of formate and hydrogen,demonstrating remarkable 320 mV of lower potential than water electrolysis.
文献关键词:
作者姓名:
Lin Dong;Guan-Ru Chang;Yi Feng;Xian-Zhi Yao;Xin-Yao Yu
作者机构:
Key Laboratory of Structure and Functional Regulation of Hybrid Materials,Institutes of Physical Science and Information Technology,Anhui University,Ministry of Education,Hefei 230601,China;School of Chemistry and Chemical Engineering,Huangshan University,Huangshan 245041,China;Department of Polymer Materials and Engineering,Academy of Chemical Engineering,Hebei University of Technology,Tianjin 300130,China;Ningbo Research Institute of Ecological and Environmental Sciences,Ningbo 315000,China;Energy Materials and Devices Key Laboratory of Anhui Province for Photoelectric Conversion,Anhui University,Hefei 230601,China
引用格式:
[1]Lin Dong;Guan-Ru Chang;Yi Feng;Xian-Zhi Yao;Xin-Yao Yu-.Regulating Ni site in NiV LDH for efficient electrocatalytic production of formate and hydrogen by glycerol electrolysis)[J].稀有金属(英文版),2022(05):1583-1594
A类:
spitting,glyc,erol
B类:
Regulating,site,NiV,LDH,efficient,electrocatalytic,production,formate,hydrogen,by,glycerol,electrolysis,Energy,saving,lower,than,water,endows,promising,concurrent,value,added,purity,However,there,still,lack,electrocatalysts,both,anode,cathode,Herein,report,activation,layered,double,hydroxide,N2,H2,plasma,regulations,boosting,activity,oxidation,reaction,GOR,evo,lution,HER,respectively,Specifically,boosted,performance,overpotential,mA,Faradic,efficiency,demonstrated,electrochemically,regulated,elevated,valence,state,In,situ,Raman,spectrum,reveals,generation,species,highly,active,can,be,regenerated,process,Additionally,possible,pathway,speculated,Fourier,transform,infrared,spectroscopy,FTIR,liquid,chro,matography,results,exhibits,outstanding,displaying,mV,deliver,When,employing,assembled,electrolyzer,merely,needs,achieve,simultaneous,demonstrating,remarkable
AB值:
0.488333
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