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Temperature-dependent Schottky barrier in high-performance organic solar cells

机译:高性能有机太阳能电池中随温度变化的肖特基势垒

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摘要

Organic solar cells (OSCs) have attracted great attention in the past 30 years, and the power conversion efficiency (PCE) now reaches around 10%, largely owning to the rapid material developments. Meanwhile with the progress in the device performance, more and more interests are turning to understanding the fundamental physics inside the OSCs. In the conventional bulk-heterojunction architecture, only recently it is realized that the blend/cathode Schottky junction serves as the fundamental diode for the photovoltaic function. However, few researches have focused on such junctions, and their physical properties are far from being well-understood. In this paper based on PThBDTP:PC71BM blend, we fabricated OSCs with PCE exceeding 10%, and investigated temperature-dependent behaviors of the junction diodes by various characterization including current-voltage, capacitance-voltage and impedance measurements between 70 to 290 K. We found the Schottky barrier height exhibits large inhomogeneity, which can be described by two sets of Gaussian distributions.
机译:在过去的30年中,有机太阳能电池(OSC)引起了极大的关注,并且功率转换效率(PCE)现在达到了10%左右,这在很大程度上归功于材料的快速发展。同时,随着设备性能的进步,越来越多的兴趣转向理解OSC内部的基本物理原理。在常规的体-异质结结构中,直到最近才意识到混合/阴极肖特基结用作光伏功能的基本二极管。但是,很少有研究集中在这种结点上,并且它们的物理性质远未得到很好的理解。本文基于PThBDTP:PC71BM共混物,制造了PCE超过10%的OSC,并通过电流-电压,电容-电压和70-290 K之间的阻抗测量等各种特性研究了结型二极管的温度相关行为。发现肖特基势垒高度表现出较大的不均匀性,可以用两组高斯分布来描述。

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