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Plasmon Resonance Enhanced Optical Absorption in Inverted Polymer/Fullerene Solar Cells with Metal Nanoparticle-Doped Solution-Processable TiO2 Layer

机译:掺杂金属纳米粒子的溶液可加工TiO2层在倒置聚合物/富勒烯太阳能电池中的等离子体共振增强了光吸收。

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摘要

This paper investigates the effects of localized surface plasmon resonance (LSPR) in an inverted polymer/fullerene solar cell by incorporating Au and/or Ag nanoparticles (NPs) into the TiO2 buffer layer. Enhanced light harvesting via plasmonic resonance of metal NPs has been observed. It results in improved short-circuit current density (J_(sc)) while the corresponding open-circuit voltage (V_(oc)) is maintained. A maximum power conversion efficiency of 7.52% is obtained in the case of introducing 30% Ag NPs into the TiO2, corresponding to a 20.7% enhancement compared with the reference device without the metal NPs. The device photovoltaic characteristics, photocurrent properties, steady-state and dynamic photoluminescen-ces of active layer on metal NP-doped TiO2, and electric field profile in metal NP-doped TiO2 layers are systematically investigated to explore how the plasmonic effects of Au and/or Ag NPs influence the OSC performance.
机译:本文通过将Au和/或Ag纳米颗粒(NPs)掺入TiO2缓冲层中,研究了反向聚合物/富勒烯太阳能电池中局部表面等离子体共振(LSPR)的影响。已经观察到通过金属NP的等离子体共振增强的光收集。这样可以改善短路电流密度(J_(sc)),同时保持相应的开路电压(V_(oc))。在将30%Ag NPs引入TiO2的情况下,可获得7.52%的最大功率转换效率,与没有金属NPs的参考器件相比,提高了20.7%。系统研究了金属NP掺杂TiO2上有源层的器件光伏特性,光电流特性,有源层的稳态和动态光致发光光谱以及电场分布,以研究Au和/的等离子体效应或银纳米颗粒会影响OSC性能。

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