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典型文献
Low-dimensional MXenes as noble metal-free co-catalyst for solar-to-fuel production:Progress and prospects
文献摘要:
Direct conversion of solar energy into chemical fuels via semiconducting materials through photocatalytic technology is a sustainable way to tackle the global warming,environmental issue and energy crisis.Tran-sition metal carbides and nitrides(MXenes),a newly emerging class of 2D layered materials,has gained tremendous attention as a noble metal-free co-catalyst for boosting photoreactivity due to its extraor-dinary characteristics like elemental abundance,excellent electrical conductivity,abundant surface func-tional groups,unique hydrophilic behavior and flexible modulation of chemical composition.The rational integration of low-dimensional MXenes in the form of 2D layered structures or 0D quantum dots with diverse semiconducting materials offer more versatile and robust heterostructured-photocatalysts that are applicable in solar fuel generation.Herein,we summarize the recent advances and achievements in the synthesis of low-dimensional MXenes and their application in hydrogen production from water splitting and CO2 photoreduction.A comprehensive discussion of the fundamentals for solar fuel production,syn-thesis strategies and theoretical calculations for MXenes-based photocatalysts are also given.Finally,the existing challenges and further perspectives of MXenes-based nanostructures for efficient solar fuel pro-duction are addressed.
文献关键词:
作者姓名:
Wanying Lei;Tong Zhou;Xin Pang;Shixiang Xue;Quanlong Xu
作者机构:
College of Materials Science and Engineering,Xi'an University of Architecture and Technology,Xi'an 710055,China;Key laboratory of Carbon Materials of Zhejiang Province,Wenzhou University,Wenzhou 325027.China
引用格式:
[1]Wanying Lei;Tong Zhou;Xin Pang;Shixiang Xue;Quanlong Xu-.Low-dimensional MXenes as noble metal-free co-catalyst for solar-to-fuel production:Progress and prospects)[J].材料科学技术(英文版),2022(19):143-164
A类:
photoreactivity,extraor,dinary
B类:
Low,dimensional,MXenes,noble,metal,free,solar,production,Progress,prospects,Direct,conversion,energy,into,chemical,fuels,via,semiconducting,materials,through,photocatalytic,technology,sustainable,way,tackle,global,warming,environmental,issue,crisis,Tran,carbides,nitrides,newly,emerging,class,2D,layered,has,gained,tremendous,attention,boosting,due,its,characteristics,like,elemental,abundance,excellent,electrical,conductivity,abundant,surface,func,groups,unique,hydrophilic,behavior,flexible,modulation,composition,rational,integration,low,form,0D,quantum,dots,diverse,offer,more,versatile,robust,heterostructured,photocatalysts,that,are,applicable,generation,Herein,we,summarize,recent,advances,achievements,synthesis,their,application,hydrogen,from,water,splitting,photoreduction,comprehensive,discussion,fundamentals,strategies,theoretical,calculations,also,given,Finally,existing,challenges,further,perspectives,nanostructures,efficient,addressed
AB值:
0.607404
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