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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Efficient work-function engineering of solution-processed MoS2 thin-films for novel hole and electron transport layers leading to high-performance polymer solar cells
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Efficient work-function engineering of solution-processed MoS2 thin-films for novel hole and electron transport layers leading to high-performance polymer solar cells

机译:用于新型空穴和电子传输层的溶液处理MoS2薄膜的高效功函数工程设计,可产生高性能聚合物太阳能电池

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摘要

The work-function of MoS2 interfacial layers can be efficiently modulated by p- and n-doping treatments. As a result, the PCE of devices with a p-doped MoS2-based HTL is increased from ~2.8 to ~3.4%. Particularly, after n-doping the PCE was dramatically increased due to the change in work-function compared with un-doped MoS2 thin-films.
机译:MoS2界面层的功函数可以通过p和n掺杂处理有效地进行调制。结果,带有基于p掺杂的MoS2的HTL的器件的PCE从2.8%增至3.4%。特别地,与未掺杂的MoS2薄膜相比,在n掺杂之后,由于功函的变化,PCE显着增加。

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