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纳米级金颗粒修饰的硫化锌球体的合成及其增强的湿度检测响应

Synthesis and enhanced humidity detection response of nanoscale Au-particle-decorated ZnS spheres.

作者信息

Liang Yuan-Chang, Liu Shang-Luen

机构信息

Institute of Materials Engineering, National Taiwan Ocean University, Keelung 20224, Taiwan.

出版信息

Nanoscale Res Lett. 2014 Nov 30;9(1):647. doi: 10.1186/1556-276X-9-647. eCollection 2014.

Abstract

We successfully prepared Au-nanoparticle-decorated ZnS (ZnS-Au) spheres by sputtering Au ultrathin films on surfaces of hydrothermally synthesized ZnS spheres and subsequently postannealed the samples in a high-vacuum atmosphere. The Au nanoparticles were distributed on ZnS surfaces without substantial aggregation. The Au nanoparticle diameter range was 5 to 10 nm. Structural information showed that the surface of the annealed ZnS-Au spheres became more irregular and rough. A humidity sensor constructed using the Au-nanoparticle-decorated ZnS spheres demonstrated a substantially improved response to the cyclic change in humidity from 11% relative humidity (RH) to 33% to 95% RH at room temperature. The improved response was associated with the enhanced efficiency of water molecule adsorption onto the surfaces of the ZnS because of the surface modification of the ZnS spheres through noble-metal nanoparticle decoration.

摘要

我们通过在水热合成的硫化锌(ZnS)球体表面溅射金超薄膜,随后在高真空气氛中对样品进行退火处理,成功制备了金纳米颗粒修饰的硫化锌(ZnS-Au)球体。金纳米颗粒分布在ZnS表面,没有大量聚集。金纳米颗粒的直径范围为5至10纳米。结构信息表明,退火后的ZnS-Au球体表面变得更加不规则和粗糙。使用金纳米颗粒修饰的ZnS球体构建的湿度传感器在室温下对相对湿度(RH)从11%循环变化到33%再到95%的湿度变化表现出显著改善的响应。这种改善的响应与通过贵金属纳米颗粒修饰对ZnS球体进行表面改性,从而提高了水分子在ZnS表面的吸附效率有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a16/4266514/0cd4c5c6af7a/1556-276X-9-647-1.jpg

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