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Enhanced NO2 sensing characteristics of Au modified porous silicon/thorn-sphere-like tungsten oxide composites

机译:Au修饰的多孔硅/类球状氧化钨复合材料的增强NO 2感测特性

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摘要

The thorn-sphere-like tungsten oxide (WO3) made up by 1D nanorods has been successfully synthesized through hydrothermal method on the Au-modified porous silicon (PS) substrates with seed-layer induction. By using XRD, EDS, FESEM and TEM techniques, we tested and verified that the crystal structure and morphology evolution of WO3 hierarchical nanostructure on the Au-modified PS strongly depend on the Au-sputtering time and hydrothermal reaction time. In addition, by comparing the NO2-sensing properties of the prepared products, we found that the 10 s-Au decorated PS/WO3-3 h (sputtering Au for 10 s and hydrothermal reaction for 3 h) composites sensor behaving as a typical p-type semiconductor and operating at room temperature (RT) exhibits high sensitivity and response characteristics even to ppb-level NO2, which makes this kind of sensor a competitive candidate for NO2-sensing applications. Moreover, the enhanced response may not only due to the high specific surface area but the Au nanoparticles acting as promoters for the spillover effect and forming metal-semiconductor heterojunctions with the PS and WO3. The transmission of electrons and holes in the heterogeneous interface generated among PS, WO3 and Au is proposed to illustrate the p-type response mechanism. (C) 2016 Published by Elsevier B.V.
机译:一维纳米棒构成的刺球状氧化钨(WO3)是通过水热法在金修饰的多孔硅(PS)衬底上通过种子层感应成功地合成的。通过使用XRD,EDS,FESEM和TEM技术,我们测试并验证了在Au修饰的PS上WO3分层纳米结构的晶体结构和形态演变强烈依赖于Au溅射时间和水热反应时间。此外,通过比较所制备产品的NO2传感特性,我们发现10 s-Au装饰的PS / WO3-3 h(溅射Au持续10 s和水热反应3 h)复合材料传感器表现为典型的p于室温(RT)的半导体类型的半导体即使对ppb级的NO2也显示出高灵敏度和响应特性,这使得此类传感器成为NO2传感应用的竞争者。而且,增强的响应不仅可能是由于高的比表面积,而且还可能是Au纳米颗粒充当溢出效应的促进剂,并与PS和WO3形成金属-半导体异质结。提出了在PS,WO3和Au之间生成的异质界面中电子和空穴的传输,以说明p型响应机制。 (C)2016由Elsevier B.V.发布

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