典型文献
Recent Development of Quantum Dot Deposition in Quantum Dot-Sensitized Solar Cells
文献摘要:
As new-generation solar cells,quantum dot-sensitized solar cells(QDSCs)have the outstanding advantages of low cost and high theoretical efficiency;thus,such cells receive extensive research attention.Their power conversion efficiency(PCE)has increased from 5%to over 15%in the past decade.However,compared with the theoretical efficiency(44%),the PCE of QDSCs still needs further improvement.The low loading amount of quantum dots(QDs)is a key factor limiting the improve-ment of cell efficiency.The loading amount of QDs on the surface of the substrate film is important for the performance of QDSCs,which directly affects the light-harvesting ability of the device and interfacial charge recombination.The optimiza-tion of QD deposition and the improvement of the loading amount are important driving forces for the rapid development of QDSCs in recent years and a key breakthrough in future development.In this paper,the research progress of QD deposition on the surface of substrate films in QDSCs was reviewed.In addition,the main deposition methods and their advantages and disadvantages were discussed,and future research on the further increase in loading amount was proposed.
文献关键词:
中图分类号:
作者姓名:
Ziwei Li;Zhenxiao Pan;Xinhua Zhong
作者机构:
Key Laboratory for Biobased Materials and Energy of Ministry of Education,College of Materials and Energy,South China Agricultural University,Guangzhou 510642,China;Guangdong Laboratory for Lingnan Modern Agriculture,Guangzhou 510642,China
文献出处:
引用格式:
[1]Ziwei Li;Zhenxiao Pan;Xinhua Zhong-.Recent Development of Quantum Dot Deposition in Quantum Dot-Sensitized Solar Cells)[J].天津大学学报(英文版),2022(05):374-384
A类:
Sensitized,QDSCs
B类:
Recent,Development,Quantum,Dot,Deposition,Solar,Cells,new,generation,solar,cells,quantum,sensitized,have,outstanding,low,cost,high,theoretical,efficiency,thus,such,receive,extensive,research,attention,Their,power,conversion,PCE,has,increased,from,over,past,decade,However,compared,still,needs,further,improvement,loading,amount,dots,QDs,key,limiting,surface,substrate,important,performance,which,directly,affects,light,harvesting,ability,device,interfacial,charge,recombination,optimiza,deposition,driving,forces,rapid,development,recent,years,breakthrough,future,In,this,paper,progress,films,was,reviewed,addition,main,methods,their,disadvantages,were,discussed,proposed
AB值:
0.50684
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