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Healing the degradable organic–inorganic heterointerface for highly efficient and stable organic solar cells 被引量:3

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摘要 The heterointerface between the contacted organic and inorganic semiconductors critically affects the charge extraction,hence overall performance of organic optoelectronics,especially for organic solar cells(OSCs).Herein,we develop an effective interfacial strategy that simultaneously boosts the chemical,electric,and electronic properties of the organic–inorganic heterointerface of the derived OSCs,through implanting conjugated molecules as selfassemble monolayers(SAMs)to metal oxide nanoparticles(MO NPs).As results,SAM passivated zinc oxide nanoparticles(ZnO NPs)as electron transport layers(ETLs)not only enable the best performed OSCs containing MO ETLs,but also exhibit the most desirable thickness insensitive features(up to 300 nm).In addition,SAM-ZnO ETLs help also substantially improving the photostability of the derived OSCs.Overall,this work can be beneficial to the further development of high-performance and cost-effective OSCs.
出处 《InfoMat》 SCIE CAS 2022年第2期162-170,共9页 信息材料(英文)
基金 National Natural Science Foundation of China,Grant/Award Numbers:21722404,21674093 Zhejiang Natural Science Fund for Distinguished Young Scholars,Grant/Award Number:LR17E030001。
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