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Effect of solid inorganic salts on the formation of cubic-like aggregates of ZnSnO_3 nanoparticles in solventless, organic-free reactions and their gas sensing behaviors

机译:固体无机盐对无溶剂无有机反应中ZnSnO_3纳米颗粒立方状聚集体形成的影响及其气敏行为

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摘要

The effect of added solid inorganic salts on the morphology of ZnSnO_3 nanoparticle aggregates has been investigated based on solventless and organic-free reactions at ambient temperature. Cubic-like aggregates of ZnSnCH nanoparticles can be synthesized successfully through direct reaction of solid MOH (M~+ = K~+, Na~+) with a solid mixture of ZnCl_2 and SnCl_4-5H_2O in the presence of added inorganic salt, MCI (M~* = K~+, Na~+). In contrast, irregular spherical aggregates of ZnSnO_3 nanoparticles are produced in the reactions in absence of added solid inorganic salts. The added solid inorganic salts, which play a key role for producing the cubic-like aggregates of ZnSnCh nanoparticles with pores of ca. 2.8 nm, may act as a substrate-template for the growth of nanocrystals and the formation of their cubic-like aggregates. Gas sensors are further constructed with the aggregates of ZnSnO_3 nanoparticles as sensing materials. The sensors made with the cubic-like aggregates (C-sensors) exhibit much higher responses to the reducing gases tested, compared to those (S-sensors) from spherical aggregates synthesized without adding inorganic substrate-template into the reaction. The approach could open a new pathway for controlling the microstructure of materials with high gas sensing functionality.
机译:基于环境温度下无溶剂和无有机物的反应,研究了添加的固体无机盐对ZnSnO_3纳米颗粒聚集体形态的影响。在添加的无机盐MCI(MCI +)的作用下,固体MOH(M〜+ = K〜+,Na〜+)与ZnCl_2和SnCl_4-5H_2O的固体混合物直接反应可以成功合成ZnSnCH纳米粒子的立方状聚集体。 M〜* = K〜+,Na〜+)。相反,在不添加固体无机盐的情况下,反应中会生成ZnSnO_3纳米颗粒的不规则球形聚集体。添加的固体无机盐,对于产生具有约ca.孔的ZnSnCh纳米颗粒的立方状聚集体起关键作用。 2.8 nm可以充当纳米晶体生长及其立方状聚集体形成的基质模板。进一步构建了以ZnSnO_3纳米粒子的聚集体为传感材料的气体传感器。与在没有将无机底物模板添加到反应中的情况下,由球形聚集体合成的传感器(S传感器)相比,用立方状聚集体制成的传感器(C传感器)对测试的还原气体表现出更高的响应。该方法可以为控制具有高气体感应功能的材料的微观结构开辟一条新途径。

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  • 来源
    《Materials Science and Engineering》 |2012年第12期|p.942-948|共7页
  • 作者单位

    College of Materiais and Chemical Engineering,State Laboratory of Surface and Interface Science and Technology(SLSIST),Zhengzhou University of Light Industry,Zhengzhou 450002. China;

    College of Materiais and Chemical Engineering,State Laboratory of Surface and Interface Science and Technology(SLSIST),Zhengzhou University of Light Industry,Zhengzhou 450002. China,Institute of Applied Chemistry, Xinjiang University. Urumqi 830046, Xinjiang, China;

    College of Materiais and Chemical Engineering,State Laboratory of Surface and Interface Science and Technology(SLSIST),Zhengzhou University of Light Industry,Zhengzhou 450002. China,Institute of Applied Chemistry, Xinjiang University. Urumqi 830046, Xinjiang, China;

    College of Materiais and Chemical Engineering,State Laboratory of Surface and Interface Science and Technology(SLSIST),Zhengzhou University of Light Industry,Zhengzhou 450002. China;

    Institute of Applied Chemistry, Xinjiang University. Urumqi 830046, Xinjiang, China;

    College of Materiais and Chemical Engineering,State Laboratory of Surface and Interface Science and Technology(SLSIST),Zhengzhou University of Light Industry,Zhengzhou 450002. China,Institute of Applied Chemistry, Xinjiang University. Urumqi 830046, Xinjiang, China;

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

    ZnSnO_3 nanoparticles; cubic-like aggregates; inorganic salt; effect; gas sensors;

    机译:ZnSnO_3纳米粒子;立方状骨料;无机盐影响;气体传感器;

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