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Gas Sensing Properties of Cobalt Titanate with Multiscale Pore Structure: Experiment and Simulation

机译:多尺度孔结构钛酸钴的气敏特性:实验与仿真

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摘要

A diffusion-reaction coupled model was presented to investigate the effects of multiscale pore structure characteristics on gas sensing properties. A series of CoTiO powders with different pore size distributions were fabricated by sol-gel method. Experimental results on cobalt titanate thick films show that a well-defined multiscale pore structure is particularly desired for the improvement of sensing performance, instead of just increasing the specific surface area. The theoretical responses of sensing elements with different pore size distributions were derived and compared with experimental data on CoTiO sensors exposed to ethanol. The calculated sensitivities considering the influence of pore size changes were also found to be in agreement with the experimental results. A dimensionless Thiele modulus was introduced for assessing the critical point corresponding to the transformation from surface reaction-controlled sensitivity into diffusion-controlled sensitivity.
机译:提出了扩散反应耦合模型,以研究多尺度孔结构特征对气敏特性的影响。采用溶胶-凝胶法制备了一系列孔径分布不同的CoTiO粉末。在钛酸钴厚膜上的实验结果表明,特别需要一种定义明确的多尺度孔结构来改善传感性能,而不仅仅是增加比表面积。推导了不同孔径分布的传感元件的理论响应,并与暴露于乙醇的CoTiO传感器的实验数据进行了比较。还发现考虑孔径变化影响的计算灵敏度与实验结果一致。引入了无量纲的Thiele模量来评估临界点,该临界点对应于从表面反应控制的灵敏度到扩散控制的灵敏度的转换。

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