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通过选择性蚀刻制备的氧化锌基中空纳米颗粒:金属-半导体界面的消除与重构、蓝光发射及光催化性能的改善

ZnO-based hollow nanoparticles by selective etching: elimination and reconstruction of metal-semiconductor interface, improvement of blue emission and photocatalysis.

作者信息

Zeng Haibo, Cai Weiping, Liu Peisheng, Xu Xiaoxia, Zhou Huijuan, Klingshirn Claus, Kalt Heinz

机构信息

Key Laboratory of Materials Physics, Institute of Solid State Physics, Chinese Academy of Sciences, Hefei 230031, PR China.

出版信息

ACS Nano. 2008 Aug;2(8):1661-70. doi: 10.1021/nn800353q.

DOI:10.1021/nn800353q
PMID:19206370
Abstract

A weak acid selective etching strategy was put forward to fabricate oxide-based hollow nanoparticles (HNPs) using core/shell nanostructures of active metal/oxide nanoparticles as sacrificial templates. ZnO-based HNPs, including pure ZnO, Au/ZnO, Pt/ZnO, and Au/Pt/ZnO HNPs with diameter below 50 nm and shell thickness below 6 nm has been first achieved at low temperature. The diameter, thickness, and even sizes of ZnO and noble metal ultrafine crystals of HNPs can be well adjusted by the etching process. Synchronous with the formation of HNPs, the internal metal-semiconductor interfaces can be controllably eliminated (Zn-ZnO) and reconstructed (noble metal-ZnO). Excitingly, such microstructure manipulation has endued them with giant improvements in related performances, including the very strong blue luminescence with enhancement over 3 orders of magnitude for the pure ZnO HNPs and the greatly improved photocatalytic activity for the noble metal/ZnO HNPs. These give them strong potentials in relevant applications, such as blue light emitting devices, environment remediation, drug delivery and release, energy storage and conversion, and sensors. The designed fabrication procedure is simple, feasible, and universal for a series of oxide and noble metal/oxide HNPs with controlled microstructure and improved performances.

摘要

提出了一种弱酸选择性蚀刻策略,以活性金属/氧化物纳米颗粒的核/壳纳米结构作为牺牲模板来制备氧化物基空心纳米颗粒(HNP)。首次在低温下实现了基于ZnO的HNP,包括直径小于50 nm且壳厚度小于6 nm的纯ZnO、Au/ZnO、Pt/ZnO和Au/Pt/ZnO HNP。通过蚀刻工艺可以很好地调节HNP中ZnO和贵金属超细晶体的直径、厚度甚至尺寸。与HNP的形成同步,可以可控地消除内部金属-半导体界面(Zn-ZnO)并重建(贵金属-ZnO)。令人兴奋的是,这种微观结构调控使其在相关性能方面有了巨大提升,包括纯ZnO HNP具有超过3个数量级增强的非常强的蓝色发光,以及贵金属/ZnO HNP大大提高的光催化活性。这些使其在相关应用中具有强大潜力,如蓝光发射器件、环境修复、药物递送与释放、能量存储与转换以及传感器。所设计的制备过程简单、可行且通用,适用于一系列具有可控微观结构和改进性能的氧化物以及贵金属/氧化物HNP。

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