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用于超快自驱动异质结紫外光电探测器的聚苯胺在GaN微线上的原位共形涂层

In Situ Conformal Coating of Polyaniline on GaN Microwires for Ultrafast, Self-Driven Heterojunction Ultraviolet Photodetectors.

作者信息

Sun Yiming, Song Weidong, Gao Fangliang, Wang Xingfu, Luo Xingjun, Guo Jiaqi, Zhang Bolin, Shi Jiang, Cheng Chuan, Liu Qing, Li Shuti

机构信息

Guangdong Engineering Research Center of Optoelectronic Functional Materials and Devices, South China Normal University, Guangzhou 510631, People's Republic of China.

College of Applied Physics and Materials, Wuyi University, 22 Dongcheng Village, Jiangmen, Guangdong 529020, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2020 Mar 18;12(11):13473-13480. doi: 10.1021/acsami.9b21796. Epub 2020 Mar 5.

Abstract

Independent and zero-maintenance systems would be in urgent need in the near future internet of things. Here, we present high-performance, self-driven organic/inorganic heterojunction ultraviolet (UV) photodetectors (PDs) by in situ polymerization of polyaniline (PANI) on Gallium nitride microwires. The GaN microwires with a high crystalline quality are grown on patterned Si substrates by metal organic chemical vapor deposition. Using a facile in situ chemical polymerization method, PANI is conformally coated on the surface of GaN microwires. The constructed GaN/PANI hybrid microwire PD exhibits a high responsivity of 178 mA/W, a remarkable detectivity of 4.67 × 10 jones, and an ultrafast UV photoresponse speed (rise time of 0.2 ms and fall time of 0.3 ms) under zero bias. The intimate heterojunction in the form of N-Ga-N bonds between GaN and PANI may account for the observed high performances. The presented self-driven microwire UV PDs featuring ultrahigh-speed (sub-millisecond) response to UV light may find applications in future nano/micro-photosensor networks.

摘要

在不久的将来,物联网将迫切需要独立且无需维护的系统。在此,我们通过在氮化镓微线上原位聚合聚苯胺(PANI)来展示高性能、自驱动的有机/无机异质结紫外(UV)光电探测器(PDs)。具有高结晶质量的氮化镓微线通过金属有机化学气相沉积法生长在图案化的硅衬底上。使用简便的原位化学聚合方法,聚苯胺被保形地涂覆在氮化镓微线的表面。构建的氮化镓/聚苯胺混合微线光电探测器在零偏压下表现出178 mA/W的高响应度、4.67×10琼斯的显著探测率以及超快的紫外光响应速度(上升时间为0.2毫秒,下降时间为0.3毫秒)。氮化镓和聚苯胺之间以N - Ga - N键形式存在的紧密异质结可能是观察到的高性能的原因。所展示的对紫外光具有超高速(亚毫秒级)响应的自驱动微线紫外光电探测器可能在未来的纳米/微光传感器网络中找到应用。

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