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Photovoltaic Properties in Interpenetrating Heterojunction Organic Solar Cells Utilizing MoO3 and ZnO Charge Transport Buffer Layers

机译:利用MoO3和ZnO电荷传输缓冲层互穿的异质结有机太阳能电池中的光伏性能

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摘要

Organic thin-film solar cells with a conducting polymer (CP)/fullerene (C60) interpenetrating heterojunction structure, fabricated by spin-coating a CP onto a C60 deposit thin film, have been investigated and demonstrated to have high efficiency. The photovoltaic properties of solar cells with a structure of indium-tin-oxide/C60/poly(3-hexylthiophene) (PAT6)/Au have been improved by the insertion of molybdenum trioxide (VI) (MoO3) and zinc oxide charge transport buffer layers. The enhanced photovoltaic properties have been discussed, taking into consideration the ground-state charge transfer between PAT6 and MoO3 by measurement of the differential absorption spectra and the suppressed contact resistance at the interface between the organic and buffer layers.
机译:通过将CP旋涂到C60沉积薄膜上制成的具有导电聚合物(CP)/富勒烯(C60)互穿异质结结构的有机薄膜太阳能电池已被研究并证明具有很高的效率。通过插入三氧化钼(VI)(MoO3)和氧化锌电荷传输缓冲液可以改善具有氧化铟锡/ C60 /聚(3-己基噻吩)(PAT6)/ Au结构的太阳能电池的光伏性能层。已经讨论了增强的光电性能,其中考虑了通过测量差分吸收光谱和在有机层与缓冲层之间的界面处抑制的接触电阻,在PAT6和MoO3之间进行基态电荷转移。

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