典型文献
High-efficiency single-junction organic solar cells enabled by double-fibril network morphology
文献摘要:
Organic solar cells(OSCs),based on a blend active layer of a p-type organic semiconductor as donor and an n-type organic semi-conductor as acceptor,have attracted great attention due to their advantages of simple device structure,light weight and mechanical flexibility.Power conversion efficiency(PCE)of the OSCs is increas-ing quickly in recent years,mainly benefitted from the develop-ment of narrow bandgap and deep absorbing A-DA'D-A structured small molecule acceptors(SMAs)[1-3]and the wide bandgap conjugated polymer donors[4-6].In addition,the mor-phology optimization of its active layers[7]to realize a high qual-ity bi-continuous network with nano-scaled phase separation is also very important for high efficiency OSCs,because it determines the charge carrier mobility,exciton diffusion and dissociation effi-ciency,and charge carrier recombination behavior of the devices.
文献关键词:
中图分类号:
作者姓名:
Yongfang Li
作者机构:
Institute of Chemistry,Chinese Academy of Sciences,Beijing 100190,China;College of Chemistry,Chemical Engineering and Materials Science,Soochow University,Suzhou 215123,China
文献出处:
引用格式:
[1]Yongfang Li-.High-efficiency single-junction organic solar cells enabled by double-fibril network morphology)[J].科学通报(英文版),2022(13):1310-1312
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High,efficiency,single,junction,organic,solar,cells,enabled,by,double,fibril,network,morphology,Organic,OSCs,blend,active,type,semiconductor,have,attracted,great,attention,due,their,advantages,simple,light,weight,mechanical,flexibility,Power,conversion,PCE,increas,quickly,recent,years,mainly,benefitted,from,develop,ment,narrow,bandgap,deep,absorbing,DA,structured,small,molecule,acceptors,SMAs,wide,conjugated,polymer,donors,In,addition,optimization,its,layers,realize,high,qual,continuous,nano,scaled,phase,separation,also,very,important,because,determines,charge,carrier,mobility,exciton,diffusion,dissociation,recombination,behavior,devices
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0.648631
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