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首页> 外文期刊>Sensors and Actuators >Highly sensitive gas sensor based on Er-doped SnO_2 nanostructures and its temperature dependent selectivity towards hydrogen and ethanol
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Highly sensitive gas sensor based on Er-doped SnO_2 nanostructures and its temperature dependent selectivity towards hydrogen and ethanol

机译:基于掺Er SnO_2纳米结构的高灵敏度气体传感器及其对氢气和乙醇的温度选择性

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摘要

In the present work, impact of EP3+ doping on the response and selectivity of SnO2 based gas sensor has been investigated in detail. X-ray diffraction (XRD) results confirmed formation of a tetragonal ruffle structure of undoped and erbium doped SnO2 nanoparticles. It has been observed that specific surface area of nanoparticles has increased with increase in dopant concentration. The oxidation states and presence of erbium in SnO2 lattice has been confirmed by X-ray photoelectron spectroscopy (XPS). Photoluminescence (PL) analysis revealed that concentration of oxygen vacancies increases with increase in dopant incorporation. It has been observed that 3% Er-doped SnO2 sensor exhibited enhanced sensor response and temperature dependent selectivity towards ethanol and hydrogen at 240 and 360 degrees C respectively. The enhanced sensor response of the fabricated sensor has been ascribed to large surface area, enormous oxygen vacancies and elevated surface basicity of doped nanoparticles used. The tunable dual selectivity of 3% doped sensor towards ethanol and hydrogen makes it a perfect candidate for ethanol-hydrogen sensing for ethanol steam reforming systems combined to fuel cells.
机译:在当前的工作中,已经详细研究了EP3 +掺杂对SnO2基气体传感器的响应和选择性的影响。 X射线衍射(XRD)结果证实了未掺杂和and掺杂的SnO2纳米颗粒的四方褶皱结构的形成。已经观察到,纳米粒子的比表面积随着掺杂剂浓度的增加而增加。通过X射线光电子能谱(XPS)证实了SnO2晶格中的氧化态和presence的存在。光致发光(PL)分析表明,氧空位浓度随掺杂剂掺入量的增加而增加。已经观察到,分别在240和360℃下3%掺Er的SnO 2传感器表现出增强的传感器响应和对乙醇和氢的温度依赖性选择性。所制造的传感器的增强的传感器响应被归因于大的表面积,巨大的氧空位和所使用的掺杂纳米颗粒的升高的表面碱性。 3%掺杂的传感器对乙醇和氢气具有可调的双重选择性,使其成为结合到燃料电池的乙醇蒸汽重整系统的乙醇氢感测的理想选择。

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