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Pd-nanoparticle-decorated ZnO nanowires: Ultraviolet photosensitivity and photoluminescence properties

机译:钯纳米颗粒修饰的ZnO纳米线:紫外光敏性和光致发光特性

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摘要

ZnO nanowires (NWs) have been decorated with Pd nanoparticles of sizes less than 10nm (Pd-ZnO NWs) via a chemical solution route. The microstructural characterizations have been done using field emission scanning electron and high-resolution transmission electron microscopes. The effects of attaching Pd nanoparticles to the walls of ZnO NWs have been investigated by studying the ultraviolet (UV) photosensitivity and photoluminescence (PL) properties. The surface-modified NWs show a UV photosensitivity more than double and a response seven times faster compared to the bare NWs. The photocarrier relaxation under the steady UV illumination condition is quite different in Pd-ZnO NWs. The higher and faster photosensitivity has been explained on the basis of photocarrier transfer from the conduction band of ZnO to the Fermi level of Pd and subsequent electron trapping by the adsorbed O_2 molecules on the NWs' surface, which have been presented through a proposed model. The PL spectrum of Pd-ZnO NWs shows that the intensities of the band-edge and defect-related emissions decrease and increase, respectively, due to Pd anchoring, the effect being pronounced as the density of Pd nanoparticles increases.
机译:ZnO纳米线(NWs)已通过化学溶液途径用尺寸小于10nm的Pd纳米颗粒(Pd-ZnO NWs)装饰。使用场发射扫描电子显微镜和高分辨率透射电子显微镜已经完成了微观结构表征。通过研究紫外线(UV)的光敏性和光致发光(PL)特性,研究了将Pd纳米颗粒附着到ZnO纳米管壁上的效果。与裸露的NW相比,表面改性的NW显示出两倍以上的UV光敏性,并且响应速度快了七倍。 Pd-ZnO NWs在稳定的紫外线照射条件下,光子载流子弛豫差异很大。通过将光载流子从ZnO的导带转移到Pd的费米能级以及随后通过在NWs表面吸附的O_2分子进行电子俘获来解释更高和更快的光敏性,这些都是通过提出的模型提出的。 Pd-ZnO NWs的PL光谱表明,由于Pd的锚固,带边发射强度和缺陷相关发射的强度分别减小和增加,随着Pd纳米颗粒密度的增加,这种影响尤为明显。

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