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Design and Synthesis of Novel 2D Porous Zinc Oxide-Nickel Oxide Composite Nanosheets for Detecting Ethanol Vapor

机译:用于检测乙醇蒸气的新型2D多孔氧化锌氧化物复合纳米烯的设计与合成

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摘要

The porous zinc oxide-nickel oxide (ZnO-NiO) composite nanosheets were synthesized via sputtering deposition of NiO thin film on the porous ZnO nanosheet templates. Various NiO film coverage sizes on porous ZnO nanosheet templates were achieved by changing NiO sputtering duration in this study. The microstructures of the porous ZnO-NiO composite nanosheets were investigated herein. The rugged surface feature of the porous ZnO-NiO composite nanosheets were formed and thicker NiO coverage layer narrowed the pore size on the ZnO nanosheet template. The gas sensors based on the porous ZnO-NiO composite nanosheets displayed higher sensing responses to ethanol vapor in comparison with the pristine ZnO template at the given target gas concentrations. Furthermore, the porous ZnO-NiO composite nanosheets with the suitable NiO coverage content demonstrated superior gas-sensing performance towards 50–750 ppm ethanol vapor. The observed ethanol vapor-sensing performance might be attributed to suitable ZnO/NiO heterojunction numbers and unique porous nanosheet structure with a high specific surface area, providing abundant active sites on the surface and numerous gas diffusion channels for the ethanol vapor molecules. This study demonstrated that coating of NiO on the porous ZnO nanosheet template with a suitable coverage size via sputtering deposition is a promising route to fabricate porous ZnO-NiO composite nanosheets with a high ethanol vapor sensing ability.
机译:通过在多孔ZnO纳米片模板上通过NiO薄膜的溅射沉积合成多孔氧化锌 - 氧化镍(ZnO-NiO)复合纳米片。通过在本研究中改变NIO溅射持续时间来实现多孔ZnO纳米片模板上的各种NIO膜覆盖尺寸。本文研究了多孔ZnO-NiO复合纳米片的微观结构。形成多孔ZnO-NiO复合纳米片的粗糙表面特征,并较厚的NIO覆盖层在ZnO纳米片模板上变窄。与给定靶气体浓度的原始ZnO模板相比,基于多孔ZnO-NiO复合纳米型的气体传感器显示出对乙醇蒸气的感测响应更高。此外,具有合适的NIO覆盖含量的多孔ZnO-NiO复合纳米片显示出优异的气体传感性能朝向50-750ppm乙醇蒸气。所观察到的乙醇气相感测性能可能归因于合适的ZnO / NiO异质结数和独特的多孔纳米片结构,具有高比表面积,在表面上提供丰富的活性位点和用于乙醇蒸气分子的许多气体扩散通道。该研究证明,通过溅射沉积涂覆具有合适的覆盖尺寸的多孔ZnO纳米片模板中的NIO是制造具有高乙醇蒸汽感测能力的多孔ZnO-NiO复合纳米片的有望的途径。

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