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Spatially resolved photoresponse on individual ZnO nanorods: correlating morphology defects and conductivity

机译:单个ZnO纳米棒上的空间分辨光响应:关联形态缺陷和电导率

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摘要

Electrically active native point defects have a significant impact on the optical and electrical properties of ZnO nanostructures. Control of defect distribution and a detailed understanding of their physical properties are central to designing ZnO in novel functional forms and architecture, which ultimately decides device performance. Defect control is primarily achieved by either engineering nanostructure morphology by tailoring growth techniques or doping. Here, we report conducting atomic force microscopy studies of spatially resolved photoresponse properties on ZnO nanorod surfaces. The photoresponse for super-band gap, ultraviolet excitations show a direct correlation between surface morphology and photoactivity localization. Additionally, the system exhibits significant photoresponse with sub-bandgap, green illumination; the signature energy associated with the deep level oxygen vacancy states. While the local current-voltage characteristics provide evidence of multiple transport processes and quantifies the photoresponse, the local time-resolved photoresponse data evidences large variations in response times (90 ms–50 s), across the surface of a nanorod. The spatially varied photoconductance and the range in temporal response display a complex interplay of morphology, defects and connectivity that brings about the true colour of these ZnO nanostructures.
机译:电活性本征点缺陷对ZnO纳米结构的光学和电学性质具有重大影响。缺陷分布的控制和对它们物理性质的详细了解对于以新颖的功能形式和体系结构设计ZnO至关重要,最终决定了器件的性能。缺陷控制主要是通过调整生长技术或掺杂来设计纳米结构形态来实现的。在这里,我们报告进行原子力显微镜研究ZnO纳米棒表面上的空间分辨的光响应特性。超能隙的光响应,紫外线激发显示表面形态与光活性本地化之间存在直接关系。此外,该系统还表现出了显着的光响应,并具有亚带隙,绿色照明;与深层氧空位状态有关的特征能量。虽然局部电流-电压特性提供了多种传输过程的证据并量化了光响应,但局部时间分辨的光响应数据表明,跨纳米棒表面的响应时间(90μms–50μs)有很大差异。空间变化的光电导和时间响应范围显示出形态,缺陷和连通性之间的复杂相互作用,从而带来了这些ZnO纳米结构的本色。

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