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Enhanced gas-sensing performance of Au-modified ZnO nanoparticles synthesized using bamboo cellulose as a template

机译:以竹纤维素为模板合成的Au改性ZnO纳米颗粒的气敏性能增强

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Au-modified ZnO (Au/ZnO) nanoparticles (NPs) synthesized using bamboo cellulose template and calcination process were characterized using X-ray diffraction, field-emission scanning electron microscopy, and transmission electron microscopy. The gas-sensing performance of Au/ZnO NPs based sensors was also examined. The results indicated that the Au/ZnO NPs exhibited enhanced gas-sensing performance compared with that of pure ZnO. The response of the Au/ZnO NPs to 100 ppm ethanol (50) at 240 °C was nearly 2.7 times higher than that to acetone (18.4) and approximately 12.5 times higher than that to benzene (4.1), carbon monoxide (1.6), hydrogen (1.6), and methane (1.8), respectively, which demonstrated their higher selectivity to ethanol versus other gases. This high response to ethanol could be attributed to the small size, Schottky barrier, and catalysis.
机译:利用X射线衍射,场发射扫描电子显微镜和透射电子显微镜对用竹纤维素模板合成的金修饰的ZnO(Au / ZnO)纳米粒子(NPs)和煅烧过程进行了表征。还检查了基于Au / ZnO NPs的传感器的气敏性能。结果表明,与纯ZnO相比,Au / ZnO NPs具有增强的气敏性能。在240°C下,Au / ZnO NP对100 ppm乙醇(50)的响应比对丙酮(18.4)的响应高近2.7倍,比对苯(4.1),一氧化碳(1.6)的响应高约12.5倍,氢气(1.6)和甲烷(1.8)分别显示出对乙醇的选择性比其他气体更高。对乙醇的高响应可归因于其体积小,肖特基势垒和催化作用。

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