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Perovskite and Conjugated Polymer Wrapped Semiconducting Carbon Nanotube Hybrid Films for High-Performance Transistors and Phototransistors

机译:钙钛矿和共轭聚合物包裹半导体碳纳米管混合膜,用于高性能晶体管和光电晶体管

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摘要

Although organic inorganic halide perovskites continue to generate considerable interest due to great potentials for various optoelectronic devices, there are some critical obstacles to practical applications, including lead toxicity, relatively low field-effect mobility, and strong hysteresis during operation. This paper proposes a universal approach to significantly improve mobility and operational stability with reduced dual-sweep hysteresis for perovskite-based thin film transistors (TFTs) by coupling low-dimensional lead-free perovskite material (C6H5C2H4NH3)(2)SnI4 (hereafter abbreviated as (PEA)(2)SnI4) with embedded conjugated polymer wrapped semiconducting carbon nanotubes (semi-CNTs). In (PEA)(2)SnI4/semi-CNT hybrid TFTs, semi-CNTs can provide highway-like transport paths, enabling smoother carrier transport with less trapping and scattering. We also demonstrate the performance of (PEA)(2)SnI4/semi-CNT hybrid phototransistors with ultrahigh photoresponsivity (R) of 6.3 x 10(4) A/W and detectivity (D*) of 1.12 x 10(17) Jones, which is about 2 or 3 orders of magnitude higher than that of the best devices available to date. The results indicate promising potentials for solution-processed perovskite/semi-CNT hybrid platforms, and the developed strategy can be applied for high-performance perovskite nanomaterial optoelectronics.
机译:虽然有机无机卤化物钙钛矿由于各种光电器件的巨大潜力而​​继续产生相当大的兴趣,但实际应用存在一些关键障碍,包括铅毒性,相对低的场效应迁移率,以及在操作期间的强滞后。本文提出了一种通过偶联低维无铅钙钛矿材料(C6H5C2H4NH3)(2)SNI4(以下缩写为(豌豆)(2)SNI4)具有嵌入式共轭聚合物包裹半导体碳纳米管(半CNT)。在(豌豆)(2)SNI4 /半CNT混合TFT中,半CNT可以提供高速公路状的运输路径,使得具有更小的捕获和散射的更平滑的载波传输。我们还展示了(豌豆)(2)SNI4 /半CNT混合光学电力的性能,具有超高光学转换(R)为6.3×10(4)A / W和探测(D *),为1.12 x 10(17)琼斯,大约比迄今为止可用的最佳设备的数量级约为2或3个数量级。结果表明解决方案处理的钙钛矿/半CNT混合平台的有希望的潜力,并且可以应用开发的策略用于高性能钙钛矿纳米材料光电子。

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