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Improvement of polypyrrole nanowire devices by plasmonic space charge generation: high photocurrent and wide spectral response by Ag nanoparticle decoration

机译:改进的聚吡咯纳米线设备电浆空间电荷生成:高光电流和宽光谱响应纳米颗粒装饰

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摘要

In this study, improvement of the opto-electronic properties of non-single crystallized nanowire devices with space charges generated by localized surface plasmon resonance (LSPR) is demonstrated. The photocurrent and spectral response of single polypyrrole (PPy) nanowire (NW) devices are increased by electrostatically attached Ag nanoparticles (Ag NPs). To take advantage of plasmon-exciton coupling in the photocurrent of the device, 80 nm of Ag NPs (454 nm = lambda(max)) were chosen for matching the maximum absorption with PPy NWs (442 nm =lambda(max)). The photocurrent density is remarkably improved, up to 25.3 times (2530%), by the Ag NP decoration onto the PPy NW (PPyAgNPs NW) under blue light (lambda = 425-475 nm) illumination. In addition, the PPyAgNPs NW shows a photocurrent decay time twice that of PPy NW, as well as an improved spectral response of the photocurrent. The improved photocurrent efficiency, decay time, and spectral response resulted from the space charges generated by the LSPR of Ag NPs. Furthermore, the increasing exponent (m) of the photocurrent (J(PC) similar to V-m) and finite-differential time domain (FDTD) simulation straightforwardly indicate relatively large plasmonic space charge generation under blue light illumination. These results prove that the performance of non-single crystallized polymer nanowire devices can also be improved by plasmonic enhancement.
机译:在这项研究中,光电的改进非单一结晶纳米线属性设备与空间电荷产生的本地化表面等离子体共振(LSPR)。单一的光电流和光谱响应聚吡咯(PPy)纳米线(西北)设备增加了静电Ag)纳米颗粒(Ag) NPs)。plasmon-exciton耦合的光电流设备,80纳米Ag NPs(454海里=λ(max))为匹配的最大选择吸收与PPy NWs(442海里=λ(max))。光电流密度明显提高,25.3倍(2530%),由Ag NP装饰到PPy NW (PPyAgNPs NW)蓝光(λ= 425 - 475 nm)照明。PPyAgNPs NW显示了光电流衰减时间两倍的PPy NW,以及一种改进光电流的光谱响应。光电流效率提高、衰减时间光谱响应的空间费用由LSPR Ag NPs的生成。增加光电流的指数(m)(J (PC)类似于伏特计)和有限差分时间域(FDTD)模拟直截了当地表明相对较大的电浆空间电荷代下蓝色光照明。结果表明,非单一性能结晶聚合物纳米线设备也可以提高了电浆增强。

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