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首页> 外文期刊>Journal of electroceramics >On the Relationship Between the Grain Size and Gas-Sensitivity of Chemo-Resistive Metal-Oxide Gas Sensors with Nanosized Grains
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On the Relationship Between the Grain Size and Gas-Sensitivity of Chemo-Resistive Metal-Oxide Gas Sensors with Nanosized Grains

机译:纳米晶粒化学抗金属氧化物气体传感器的晶粒尺寸与气体敏感性之间的关系

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In this work we elaborate the effect of grain size on the sensitivity of chemo-resistive metal-oxide gas sensors with nanosized grains. The effective carrier concentration in nanocrystalline SnO{sub}2 sensors with various grain sizes is calculated as a function of the surface state density. This involves numerical computation of the charge balance equation (i.e. the electroneutrality condition) using approximated analytical solutions of Poisson's equation for small spherical crystallites. The calculations demonstrate a sharp decrease in the carrier concentration when the surface state density reaches a critical value that corresponds to a condition of fully depleted grains, namely when nearly all the electrons are trapped at the surface. Assuming that the variations in the surface state density are induced by surface interactions with the gas phase, these calculations enable to simulate the response curves of nanocrystalline SnO{sub}2 gas sensors. The simulations show that the conductivity increases linearly with decreasing trapped charge densities, and that the sensitivity to the gas-induced variations in the trapped charge density is proportional to 1/D, where D is the average grain size.
机译:在这项工作中,我们阐述了晶粒尺寸对具有纳米晶粒的耐化学腐蚀金属氧化物气体传感器灵敏度的影响。计算具有不同晶粒尺寸的纳米晶SnO {sub} 2传感器中的有效载流子浓度,作为表面态密度的函数。这涉及使用泊松方程的近似解析解对小型球形微晶进行电荷平衡方程(即电子中性条件)的数值计算。这些计算表明,当表面态密度达到与完全耗尽晶粒的状态相对应的临界值时,即当几乎所有电子都被捕获在表面时,载流子浓度急剧下降。假设表面状态密度的变化是由与气相的表面相互作用引起的,这些计算能够模拟纳米晶SnO {sub} 2气体传感器的响应曲线。模拟表明,电导率随陷阱电荷密度的降低而线性增加,并且对于气体诱发的陷阱电荷密度变化的灵敏度与1 / D成正比,其中D为平均晶粒尺寸。

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