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Enhanced Ethanol Sensing Characteristics of ln2O3-Decorated NiO Hollow Nanostructures via Modulation of Hole Accumulation Layers

机译:通过空穴积累层的调制增强了In2O3装饰的NiO空心纳米结构的乙醇传感特性

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In this work, we report a dramatic enhancement in ethanol sensing characteristics of NiO hollow nanostructures via decoration with ln2O3 nanoclusters. The pure NiO and 1.64—4.41 atom % In-doped NiO and In2O3-decorated NiO hollow spheres were prepared by ultrasonic spray pyrolysis, and their gas sensing characteristics were investigated. The response (the ratio between the resistance in gas and air) of the ln2O3-decorated NiO hollow spheres to 5 ppm ethanol (C2H5OH) was 9.76 at 350 °C, which represents a significant improvement over the In-doped NiO and pure NiO hollow spheres (3.37 and 2.18, respectively). Furthermore, the 90% recovery time was drastically reduced from 1880 to 23 s, and a selective detection of ethanol with negligible cross-response to other gases was achieved. The enhanced gas response and fast recovery kinetics were explained in relation to the thinning of the near-surface hole accumulation layer of p-type NiO underneath n-type ln2O3, the change of charge carrier concentration, and the variation of oxygen adsorption.
机译:在这项工作中,我们报告了通过用ln2O3纳米簇进行装饰,NiO中空纳米结构的乙醇感测特性有了显着提高。通过超声喷雾热解法制备了纯NiO和1.64-4.41原子%的In掺杂NiO和In2O3修饰的NiO空心球,并研究了其气敏特性。 ln2O3修饰的NiO中空球对5 ppm乙醇(C2H5OH)的响应(在350°C时)为9.76,与In掺杂NiO和纯NiO中空相比有显着改善球体(分别为3.37和2.18)。此外,将90%的恢复时间从1880年大幅减少至23 s,从而实现了对乙醇的选择性检测,对其他气体的交叉反应可以忽略不计。解释了增强的气体响应和快速恢复动力学,这与在n型ln2O3下的p型NiO的近表面空穴积累层变薄,电荷载流子浓度的变化以及氧吸附的变化有关。

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