Enhanced gas selectivity by p-n type competition of ZnO nanorods with varied CuO shells

Yuanfang Hou, Hi-Wen Chen, Shu-Jen Chen, Ruey‐Chi Wang
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Abstract

In this work, n-ZnO/p-CuxO and n-Cu:ZnO/n-Zn:CuO core-shell nanorod (NR) arrays were synthesized by depositing CuxO nanoshells with different thickness on surface of ZnO NRs and subsequent annealing. Scanning electron microscopy (SEM) and Transmission electron microscopy (TEM) show the outer CuxO shells were comprised of Cu2O and CuO nanocrystals before annealing, but they transformed to single-crystalline Zn doped CuO nanoparticles after annealing. X-ray diffraction (XRD) showed the (0002) peaks shift to higher angle after annealing, indicative of diffusion of Cu and replacement of Zn2+ by Cu2+ ions. Room-temperature Gas-sensing measurements show the n-ZnO/p-CuxO core/shell nanostructures with various CuxO thicknesses demonstrating enhanced selectivity for different gases by utilizing the competition of inner n-ZnO and outer p-CuxO. This work proposes an effective route to synthesize n-ZnO/p-CuxO and CZO nanostructures which have great potential in developing room-temperature gas sensors.
不同CuO壳层ZnO纳米棒的p-n型竞争增强了气体选择性
本文通过在ZnO纳米棒表面沉积不同厚度的CuxO纳米壳并进行退火,制备了n-ZnO/p-CuxO和n-Cu:ZnO/n-Zn:CuO核壳纳米棒阵列。扫描电镜(SEM)和透射电镜(TEM)分析表明,退火前CuxO外层由Cu2O和CuO纳米晶组成,退火后转变为单晶掺杂Zn的CuO纳米粒子。x射线衍射(XRD)结果表明,退火后的(0002)峰向更高的角度移动,表明Cu的扩散和Zn2+被Cu2+离子取代。室温气敏测量表明,具有不同CuxO厚度的n-ZnO/p-CuxO核壳纳米结构通过利用内部n-ZnO和外部p-CuxO的竞争,增强了对不同气体的选择性。本研究提出了一种合成n-ZnO/p-CuxO和CZO纳米结构的有效途径,这些纳米结构在开发室温气体传感器方面具有很大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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