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Tunable UV- and Visible-Light Photoresponse Based on p-ZnO Nanostructures/n-ZnO/Glass Peppered with Au Nanoparticles

机译:基于P-ZnO纳米结构/ N-ZnO /玻璃用Au纳米颗粒的可调谐UV-和可见光光光响应

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UV- and visible-light photoresponse was achieved via p-type K-doped ZnO nanowires and nanosheets that were hydrothermally synthesized on an n-ZnO/glass substrate and peppered with Au nanoparticles. The K content of the p-ZnO nanostructures was 0.36 atom %. The UV- and visible-light photoresponse of the p-ZnO nanostructures/n-ZnO sample was roughly 2 times higher than that of the ZnO nanowires. The Au nanoparticles of various densities and diameter sizes were deposited on the p-ZnO nanostructures/n-ZnO samples by a simple UV photochemical reaction method yielding a tunable and enhanced UV- and visible-light photoresponse. The maximum UV and visible photoresponse of the Au nanoparticle sample was obtained when the diameter size of the Au nanoparticle was approximately 5-35 nm. On the basis of the localized surface plasmon resonance effect, the UV, blue, and green photocurrent/dark current ratios of Au nanoparticle/p-ZnO nanostructures/n-ZnO are similar to 1165, similar to 94.6, and similar to 9.7, respectively.
机译:通过P型K掺杂的ZnO纳米线和纳米片来实现紫外线和可见光光光响应,所述纳米片在N-ZnO /玻璃基底上水热合成并用Au纳米颗粒用纳米粒子合成。 P-ZnO纳米结构的K含量为0.36原子%。 P-ZnO纳米结构/ N-ZnO样品的UV-和可见光光光学呈响应大约比ZnO纳米线高的2倍。通过简单的UV光化学反应方法沉积在p-ZnO纳米结构/ N-ZnO样品上沉积各种密度和直径尺寸的Au纳米颗粒,得到可调谐和增强的UV-和可见光光响应。当Au纳米颗粒的直径尺寸约为5-35nm时,获得Au纳米颗粒样品的最大UV和可见光光响应。基于局部表面等离子体共振效应,Au纳米颗粒/ p-ZnO纳米结构/ N-ZnO的UV,蓝色和绿色光电流/暗电流比率与1165相似,类似于94.6,同样为9.7 。

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