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Deciphering photocarrier dynamics for tuneable high-performance perovskite-organic semiconductor heterojunction phototransistors

机译:可调谐高性能钙钛矿-有机半导体异质结光电晶体管的光解载流子动力学

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摘要

Looking beyond energy harvesting, metal-halide perovskites offer great opportunities to revolutionise large-area photodetection technologies due to their high absorption coefficients, long diffusion lengths, low trap densities and simple processability. However, successful extraction of photocarriers from perovskites and their conversion to electrical signals remain challenging due to the interdependency of photogain and dark current density. Here we report hybrid hetero-phototransistors by integrating perovskites with organic semiconductor transistor channels to form either “straddling-gap” type-I or “staggered-gap” type-II heterojunctions. Our results show that gradual transforming from type-II to type-I heterojunctions leads to increasing and tuneable photoresponsivity with high photogain. Importantly, with a preferential edge-on molecular orientation, the type-I heterostructure results in efficient photocarrier cycling through the channel. Additionally, we propose the use of a photo-inverter circuitry to assess the phototransistors’ functionality and amplification. Our study provides important insights into photocarrier dynamics and can help realise advanced device designs with “on-demand” optoelectronic properties.
机译:除了能量收集之外,金属卤化物钙钛矿还具有大的机会,因为它们具有高吸收系数,长扩散长度,低陷阱密度和简单的可加工性,从而革新了大面积光电检测技术。然而,由于光增益和暗电流密度的相互依赖性,成功地从钙钛矿中提取光载体并将其转化为电信号仍然具有挑战性。在这里,我们通过将钙钛矿与有机半导体晶体管通道集成以形成“跨越式” I型或“交错式” II型异质结来报告混合型异质光电晶体管。我们的研究结果表明,从II型异质结到I型异质结的逐渐转变会导致光响应率的提高和可调性以及高光增益。重要的是,具有优先的边沿分子取向,I型异质结构导致有效的光载流子循环通过通道。此外,我们建议使用光电逆变器电路来评估光电晶体管的功能和放大率。我们的研究为光电载流子动力学提供了重要的见识,并可以帮助实现具有“按需”光电特性的高级器件设计。

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