典型文献
Near-infrared photocatalysis based on upconversion nanomaterials
文献摘要:
As the global energy crisis and environmental pollution problems become increasingly severe,it is important to de-velop new energy capture and pollution management methods.Among these new technologies,photocatalysis has garnered significant interest because of its significant application prospects in harnessing pollution-free solar energy to degrade or-ganic pollutants.From a fundamental scientific and technical perspective,improved optical frequency is a key research topic that provides a useful framework for studying the optical processes impacted by the local photonic environment.This type of study is especially pertinent because plasmonics emphasizes nonlinearity.Thus,near-infrared(NIR)catalysis has received considerable attention.In this review,we aimed to provide an integrated framework for NIR photocatalysis.We briefly introduce photocatalysis based on upconversion(UC)materials,including the efficiency of UC materials and the bination and energy transfer process between the semiconductor and UC particles as well as photoelectric response photocontrolled-delivery and photodynamic therapy based on NIR-responsive materials.
文献关键词:
中图分类号:
作者姓名:
Xingyuan Guo;Zhe Wang;Shengyan Yin;Weiping Qin
作者机构:
College of Physics,Jilin University,Changchun 130012,China;State Key Laboratory on Integrated Optoelectronics,College of Electronic Science and Engineering,Jilin University,Changchun 130012,China
文献出处:
引用格式:
[1]Xingyuan Guo;Zhe Wang;Shengyan Yin;Weiping Qin-.Near-infrared photocatalysis based on upconversion nanomaterials)[J].中国物理B(英文版),2022(10):80-87
A类:
photocontrolled
B类:
Near,infrared,photocatalysis,upconversion,nanomaterials,global,energy,crisis,environmental,pollution,problems,become,increasingly,severe,important,velop,new,capture,management,methods,Among,these,technologies,garnered,significant,interest,because,its,application,prospects,harnessing,free,solar,degrade,ganic,pollutants,From,fundamental,scientific,technical,perspective,improved,optical,frequency,key,research,topic,that,provides,useful,framework,studying,processes,impacted,by,local,photonic,This,type,especially,pertinent,plasmonics,emphasizes,nonlinearity,Thus,NIR,received,considerable,attention,In,this,review,aimed,integrated,We,briefly,introduce,UC,including,efficiency,bination,transfer,between,semiconductor,particles,well,photoelectric,response,delivery,photodynamic,therapy,responsive
AB值:
0.63895
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