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首页> 外文期刊>Sensors and Actuators >Structural evolution of NiO from porous nanorods to coral-like nanochains with enhanced methane sensing performance
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Structural evolution of NiO from porous nanorods to coral-like nanochains with enhanced methane sensing performance

机译:具有增强甲烷感测性能的多孔纳米孔对珊瑚纳米杆的NIO结构演变

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摘要

The microstructure of metal oxide semiconductor (MOS) plays an important role in improving its gas-sensing performance. In this work, in order to investigate the influence of structural modification on gas-sensing characteristics, two NiO nanostructure, including porous nanorods (PNRs) and coral-like nanochains (CNCs), were prepared via annealing pre-synthesized NiC_2O_4 nanorods at different temperatures and employed as methane (CH_4) sensing materials. The as-obtained NiO nanorods at 370 °C exhibit a porous structure with a large specific surface area of 225.05 m~2/g. While, the NiO nanochains consisted of many nanoparticles with the size of 28 nm can be synthesized at 450 °C. Despite the slight decrease in the specific surface area of NiO nanochains, the methane sensing properties were remarkably enhanced compared to that of NiO nanorods. The enhanced methane sensing performance of NiO was discussed from the perspective of structure evolution from nanorods to nanochains.
机译:金属氧化物半导体(MOS)的微观结构在提高其气体传感性能方面起着重要作用。 在这项工作中,为了研究结构改性对气体传感特性的影响,通过在不同温度下的退火预先合成的NIC_2O_4纳米座,制备两个NIO纳米结构,包括多孔纳米棒(PNR)和珊瑚状纳米/珊瑚纳米编音符(CNC) 并用作甲烷(CH_4)传感材料。 370℃的AS获得的NIO纳米码表现出具有225.05m〜2 / g的大的比表面积的多孔结构。 虽然,由尺寸为28nm的许多纳米颗粒组成的Nio纳米可以在450℃下合成。 尽管NiO纳米纳米的比表面积轻微减少,但与NiO纳米棒的比例显着增强了甲烷感测性能。 从纳米杆到纳米索的结构演化的角度讨论了NIO的增强的甲烷感测性能。

著录项

  • 来源
    《Sensors and Actuators》 |2021年第5期|129645.1-129645.10|共10页
  • 作者单位

    School of Materials Science and Engineering Cultivating Base for Key Laboratory of Environment-Friendly Inorganic Materials in University of Henan Province Henan Polytechnic University Jiaozuo 454000 China The Collaboration Innovation Center of Coal Safety Production of Henan Province Henan Polytechnic University Jiaozuo 454000 China;

    School of Materials Science and Engineering Cultivating Base for Key Laboratory of Environment-Friendly Inorganic Materials in University of Henan Province Henan Polytechnic University Jiaozuo 454000 China The Collaboration Innovation Center of Coal Safety Production of Henan Province Henan Polytechnic University Jiaozuo 454000 China;

    School of Materials Science and Engineering Cultivating Base for Key Laboratory of Environment-Friendly Inorganic Materials in University of Henan Province Henan Polytechnic University Jiaozuo 454000 China The Collaboration Innovation Center of Coal Safety Production of Henan Province Henan Polytechnic University Jiaozuo 454000 China;

    The Collaboration Innovation Center of Coal Safety Production of Henan Province Henan Polytechnic University Jiaozuo 454000 China State Key Laboratory Cultivation Bases for Gas Geology and Gas Control (Henan Polytechnic University) Jiaozuo 454000 China;

    School of Materials Science and Engineering Cultivating Base for Key Laboratory of Environment-Friendly Inorganic Materials in University of Henan Province Henan Polytechnic University Jiaozuo 454000 China The Collaboration Innovation Center of Coal Safety Production of Henan Province Henan Polytechnic University Jiaozuo 454000 China;

    School of Materials Science and Engineering Cultivating Base for Key Laboratory of Environment-Friendly Inorganic Materials in University of Henan Province Henan Polytechnic University Jiaozuo 454000 China The Collaboration Innovation Center of Coal Safety Production of Henan Province Henan Polytechnic University Jiaozuo 454000 China State Key Laboratory Cultivation Bases for Gas Geology and Gas Control (Henan Polytechnic University) Jiaozuo 454000 China;

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

    NiO; Porous nanorods; Coral-like nanochains; Structure evolution; Gas sensor;

    机译:nio;多孔纳米棒;珊瑚状纳米编号;结构演变;气体传感器;

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