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Metal nanoparticle-enhanced photocurrent in GaAs photovoltaic structures with microtextured interfaces

机译:具有微织构界面的GaAs光伏结构中金属纳米粒子增强的光电流

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摘要

The photocurrent enhancement effect caused by Au and Ag nanoparticles for GaAs-based photovoltaic structures of surface barrier or p-n junction type with microtextured interfaces has been investigated in dependence on the conditions of nanoparticles deposition and, respectively, on the shape and local dielectric environment of obtained nanoparticle arrays. Three nanoparticle deposition methods have been checked: 1) photoinduced chemical deposition of Au from aqueous AuCl3 solution forming nanowires on the ridges of quasigrating-type surface microrelief, 2) deposition of Ag nanoparticles from colloidal suspension on the GaAs substrate covered with poly(vinylpyridine), and 3) drop and dry deposition of Au/SiO2 core-shell nanoparticles from aqueous colloid solution. The comprehensive investigation of optical reflectance, photoelectric, and electrical characteristics of the fabricated barrier structures has shown the highest photovoltaic parameters for surface microrelief of quasigrating-type and electroless Au nanoparticle deposition. The analysis of characteristics obtained allowed us also to define the mechanisms of the total photocurrent enhancement.
机译:研究了金和银纳米粒子对基于GaAs的具有微织构界面的表面势垒或pn结类型的光伏结构的光电流增强效应,具体取决于纳米粒子的沉积条件以及所得纳米粒子的形状和局部介电环境纳米颗粒阵列。已检查了三种纳米颗粒沉积方法:1)从准化型表面微浮雕的脊上形成纳米线的AuCl3水溶液中光诱导化学沉积Au,2)从胶状悬浮液在覆盖有聚(乙烯基吡啶)的GaAs衬底上沉积Ag纳米颗粒3)从胶体水溶液中滴下并干燥沉积Au / SiO2核壳纳米粒子。对制备的阻挡层结构的光反射率,光电和电特性的综合研究表明,准定型和化学镀金纳米粒子沉积的表面微浮雕具有最高的光伏参数。对获得的特性的分析使我们还可以定义总光电流增强的机制。

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