典型文献
Mixed ion and electron transport theory and application in solid oxide conductors
文献摘要:
Mixed ions and electron conductors (MIECs) are an important family of electrocatalysts for electrochemical devices, such as revers-ible solid oxide cells, rechargeable metal–air batteries, and oxygen transport membranes. Concurrent ionic and electronic transports in these materials play a key role in electrocatalytic activity. An in-depth fundamental understanding of the transport phenomena is critically needed to develop better MIECs. In this brief review, we introduced generic ionic and electronic transport theory based on irreversible thermodynamics and applied it to practical oxide-based materials with oxygen vacancies and electrons/holes as the predominant defects. Two oxide systems, namely CeO2-based and LaCrO3-based materials, are selected as case studies to illustrate the utility of the transport theory in predicting oxygen partial pressure distribution across MIECs, electrochemical electronic/ionic leakage currents, and the effects of external load current on the leakage currents.
文献关键词:
中图分类号:
作者姓名:
Kevin Huang
作者机构:
Department of Mechanical engineering, University of South Carolina, Columbia, SC 292201, USA
文献出处:
引用格式:
[1]Kevin Huang-.Mixed ion and electron transport theory and application in solid oxide conductors)[J].矿物冶金与材料学报,2022(04):870-875
A类:
MIECs,revers,LaCrO3
B类:
Mixed,theory,application,solid,oxide,conductors,ions,are,important,family,electrocatalysts,electrochemical,devices,such,cells,rechargeable,metal,air,batteries,oxygen,membranes,Concurrent,ionic,electronic,transports,these,materials,play,key,role,electrocatalytic,activity,An,depth,fundamental,understanding,phenomena,critically,needed,develop,better,In,this,brief,review,we,introduced,generic,irreversible,thermodynamics,applied,practical,vacancies,electrons,holes,predominant,defects,Two,systems,namely,CeO2,selected,case,studies,illustrate,utility,predicting,partial,pressure,distribution,across,leakage,currents,effects,external,load
AB值:
0.55734
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