材料科学
异质结
半导体
光电子学
二极管
光伏
烷基
聚合物
载流子
发光二极管
侧链
纳米技术
电致发光
光伏系统
化学
有机化学
生态学
复合材料
生物
图层(电子)
作者
Rui‐Qi Png,Perq‐Jon Chia,Jiali Tang,Bo Liu,Surendran Sankaran,Mi Zhou,Siong-Hee Khong,Hardy Sze On Chan,J. H. Burroughes,Lay‐Lay Chua,Richard H. Friend,Peter K. H. Ho
出处
期刊:Nature Materials
[Springer Nature]
日期:2009-12-06
卷期号:9 (2): 152-158
被引量:246
摘要
Heterostructures are central to the efficient manipulation of charge carriers, excitons and photons for high-performance semiconductor devices. Although these can be formed by stepwise evaporation of molecular semiconductors, they are a considerable challenge for polymers owing to re-dissolution of the underlying layers. Here we demonstrate a simple and versatile photocrosslinking methodology based on sterically hindered bis(fluorophenyl azide)s. The photocrosslinking efficiency is high and dominated by alkyl side-chain insertion reactions, which do not degrade semiconductor properties. We demonstrate two new back-infiltrated and contiguous interpenetrating donor-acceptor heterostructures for photovoltaic applications that inherently overcome internal recombination losses by ensuring path continuity to give high carrier-collection efficiency. This provides the appropriate morphology for high-efficiency polymer-based photovoltaics. We also demonstrate photopatternable polymer-based field-effect transistors and light-emitting diodes, and highly efficient separate-confinement-heterostructure light-emitting diodes. These results open the way to the general development of high-performance polymer semiconductor heterostructures that have not previously been thought possible.
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