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ppb-Level Selective Hydrogen Gas Detection of Pd-Functionalized In2O3-Loaded ZnO Nanofiber Gas Sensors

机译:Pd功能化的IndO3负载的ZnO纳米纤维气体传感器的ppb级选择性氢气检测

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摘要

Pd nanoparticle-functionalized, xIn O (x = 0.05, 0.1, and 0.15)-loaded ZnO nanofibers were synthesized by an electrospinning and ultraviolet (UV) irradiation method and assessed for their hydrogen gas sensing properties. Morphological and chemical analyses revealed the desired morphology and chemical composition of the synthesized nanofibers. The optimal gas sensor namely Pd-functionalized, 0.1In O -loaded ZnO nanofibers showed a very strong response to 172–50 ppb hydrogen gas at 350 °C, which is regarded as the optimal sensing temperature. Furthermore, the gas sensors showed excellent selectivity to hydrogen gas due to the much lower response to CO and NO gases. The enhanced gas response was attributed to the excellent catalytic activity of Pd to hydrogen gas, and the formation of Pd/ZnO and In O /ZnO heterojunctions, ZnO–ZnO homojunction, as well as the formation of PdH . Overall, highly sensitive and selective hydrogen gas sensors can be produced based on a simple methodology using a synergistic effect from Pd functionalization and In O loading in ZnO nanofibers.
机译:通过静电纺丝和紫外线(UV)辐照方法合成了Pd纳米粒子功能化的,xIn O(x = 0.05、0.1和0.15)负载的ZnO纳米纤维,并对其氢气感测性能进行了评估。形态和化学分析揭示了合成纳米纤维的所需形态和化学组成。最佳气体传感器,即Pd功能化,0.1In O负载的ZnO纳米纤维,在350°C下对172–50 ppb氢气表现出非常强的响应,这被认为是最佳传感温度。此外,由于对CO和NO气体的响应要低得多,所以气体传感器对氢气具有极好的选择性。气体响应的增强归因于Pd对氢气的出色催化活性,Pd / ZnO和In O / ZnO异质结的形成,ZnO-ZnO同质结以及PdH的形成。总体而言,可以基于简单的方法,利用Pd官能化和ZnO纳米纤维中In O负载的协同效应,生产高灵敏度和选择性的氢气传感器。

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