†Division of Advanced Materials Engineering and Research Centre for Advanced Materials Development, College of Engineering, Chonbuk National University, Jeonju 561-756, South Korea.
‡Department of Chemical Engineering, Indian Institute of Technology Kanpur, Kanpur 208016, India.
ACS Appl Mater Interfaces. 2015 May 13;7(18):9462-8. doi: 10.1021/acsami.5b00055. Epub 2015 May 1.
We successfully prepared Au@ZnO core-shell nanoparticles (CSNPs) by a facile low-temperature solution route and studied its gas-sensing properties. The obtained Au@ZnO CSNPs were carefully characterized by X-ray diffraction, transmission electron microscopy (TEM), high-resolution TEM, and UV-visible spectroscopy. Mostly spherical-shaped Au@ZnO CSNPs were formed by 10-15 nm Au NPs in the center and by 40-45 nm smooth ZnO shell outside. After the heat-treatment process at 500 °C, the crystallinity of ZnO shell was increased without any significant change in morphology of Au@ZnO CSNPs. The gas-sensing test of Au@ZnO CSNPs was examined at 300 °C for various gases including H2 and compared with pure ZnO NPs. The sensor Au@ZnO CSNPs showed the high sensitivity and selectivity to H2 at 300 °C. The response values of Au@ZnO CSNPs and pure ZnO NPs sensors to 100 ppm of H2 at 300 °C were 103.9 and 12.7, respectively. The improved response of Au@ZnO CSNPs was related to the electronic sensitization of Au NPs due to Schottky barrier formation. The high selectivity of Au@ZnO CSNPs sensor toward H2 gas might be due to the chemical as well as catalytic effect of Au NPs.
我们通过一种简便的低温溶液法成功制备了 Au@ZnO 核壳纳米粒子(CSNPs),并研究了其气敏性能。通过 X 射线衍射、透射电子显微镜(TEM)、高分辨率 TEM 和紫外-可见光谱对所获得的 Au@ZnO CSNPs 进行了仔细的表征。Au@ZnO CSNPs 主要呈球形,中心为 10-15nm 的 Au NPs,外部为 40-45nm 光滑的 ZnO 壳。在 500°C 的热处理过程后,ZnO 壳的结晶度增加,而 Au@ZnO CSNPs 的形态没有任何明显变化。Au@ZnO CSNPs 的气敏测试在 300°C 下进行,用于各种气体,包括 H2,并与纯 ZnO NPs 进行了比较。传感器 Au@ZnO CSNPs 在 300°C 下对 H2 表现出高灵敏度和选择性。在 300°C 下,Au@ZnO CSNPs 和纯 ZnO NPs 传感器对 100ppm H2 的响应值分别为 103.9 和 12.7。Au@ZnO CSNPs 的响应增强与 Au NPs 由于肖特基势垒形成而产生的电子敏化有关。Au@ZnO CSNPs 传感器对 H2 气体的高选择性可能归因于 Au NPs 的化学和催化作用。