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Efficient hierarchical mixed Pd/SnO_2 porous architecture deposited microheater for low power ethanol gas sensor

机译:用于低功率乙醇气体传感器的高效分层Pd / SnO_2混合多孔结构沉积微加热器

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摘要

A novel gas microsensor combining SnO_2 submicronanostructured porous sensitive film with Micro-Electro-Mechanical systems (MEMS) microheater was successfully fabricated. The film was made of hierarchically mixed Pd/SnO_2 (HM-PTO) composites composed of Pd/SnO_2 hollow submicrospheres (Pd/SnO_2-HSs) and Pd/SnO_2 nanoparticles (Pd/SnO_2-NPs) deposited on the microheater platform using the microdispensing method. The as-prepared HM-PTO sensors exhibited high sensitivities, fast response/recovery rates, good selectivity, reliable reversibility, and relevant stability towards ethanol at low power consumption. The resulting superior sensing performances were attributed to the unique hierarchical structure. The internal void architecture of Pd/SnO_2-HSs provided large specific surface areas, proper mesopore size distribution, large number of active adsorption/interaction sites, as well as promoted the chemisorption and dissociation of gas molecules due Pd-doping to yield superior gas response. In particular, the nano-sized SnO_2 particles ensured the uniform deposition of the materials to yield enhanced local conductivities, and possibly faster phase transfer reactions responsible for the extremely good response/recovery performance. This simple fabrication procedure combined with high sensing performances look promising for the development of hierarchical morphologies of novel materials for gas sensing applications.
机译:成功地制造了一种将SnO_2亚微米/纳米结构的多孔敏感膜与微机电系统(MEMS)微型加热器结合起来的新型气体微传感器。该膜由分层混合的Pd / SnO_2(HM-PTO)复合材料制成,该复合材料由Pd / SnO_2中空亚微球(Pd / SnO_2-HSs)和Pd / SnO_2纳米颗粒(Pd / SnO_2-NPs)组成,并通过微点胶沉积方法。所制备的HM-PTO传感器具有高灵敏度,快速响应/回收率,良好的选择性,可靠的可逆性以及在低功耗下对乙醇的相关稳定性。产生的出色的传感性能归因于独特的层次结构。 Pd / SnO_2-HS的内部空隙结构提供了大的比表面积,适当的中孔尺寸分布,大量的活性吸附/相互作用位点,并促进了由于Pd掺杂而产生的气体分子的化学吸附和离解,从而产生了出色的气体响应。特别地,纳米尺寸的SnO_2颗粒确保了材料的均匀沉积,从而产生了增强的局部电导率,并且可能出现了更快的相转移反应,从而带来了极佳的响应/恢复性能。这种简单的制造过程与高感测性能相结合,对于开发用于气体感测应用的新型材料的分​​层形态具有广阔的前景。

著录项

  • 来源
    《Sensors and Actuators》 |2018年第2期|2002-2010|共9页
  • 作者单位

    Key Laboratory for Green Chemical Process of Ministry of Education, School of Chemistry and Environmental Engineering, Wuhan Institute of Technology, Xiongchu Avenue 693, Wuhan 430073, PR China;

    Jiangxi Key Laboratory for Mass Spectrometry and Instrumentation, East China University ofTechnology, Nanchang 330013, PR China;

    Key Laboratory for Green Chemical Process of Ministry of Education, School of Chemistry and Environmental Engineering, Wuhan Institute of Technology, Xiongchu Avenue 693, Wuhan 430073, PR China;

    Key Laboratory for Green Chemical Process of Ministry of Education, School of Chemistry and Environmental Engineering, Wuhan Institute of Technology, Xiongchu Avenue 693, Wuhan 430073, PR China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pd/SnO_2; Hierarchical mixed materials; Microheater; Ethanol sensing; Gas sensors;

    机译:Pd / SnO_2;分层混合材料;微型加热器;乙醇感应;气体传感器;

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