首页> 外文期刊>Journal of Sol-Gel Science and Technology >Cu/SnO2 xerogels: a novel epoxide derived nanomaterial as formaldehyde gas sensor
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Cu/SnO2 xerogels: a novel epoxide derived nanomaterial as formaldehyde gas sensor

机译:Cu / SnO2 Xerogels:一种新型环氧化物衍生的纳米材料作为甲醛气体传感器

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摘要

Traditionally, sol-gel processing of metal oxides using organometallic precursors is expensive, nonaqueous, and complicated when it comes to two-or-more dissimilar metal oxides. Herein, we report a versatile epoxide-assisted non-organometallic, aqueous, and inexpensive synthesis route of developing Cu/SnO2 xerogels and their use as efficient formaldehyde (FA) gas sensors. The route utilizes easy to handle salts as precursors (tin and copper chlorides, in the present case) and organic epoxide (propylene oxide) as a gelation agent, which led to highly porous web matrix of Cu/SnO2. The obtained Cu/SnO(2)xerogels, with 0-2 mol% Cu doping, were analyzed using XRD, Fourier transform infrared, UV-Vis, FE-SEM, TEM/HRTEM, and EDAX. As-developed xerogels showed their versatility in physico-chemical as well as FA gas sensing properties. By proper Cu-doping level in SnO2 matrix, the reduction in sensor operating temperature (325-275 degrees C) and enhancement in the gas response (S = 50-96%) are chronicled. The effects of gas sensing are represented by an epoxy-assisted Cu/SnO2 sol-gel process and the subsequent morphological and structural properties.
机译:传统上,使用有机金属前体的金属氧化物的溶胶 - 凝胶加工是昂贵的,非水的,并且在氧化物两种或更多的不同金属氧化物时复杂。在此,我们报告了多功能环氧辅助的非有机金属,水性和廉价的合成途径,其用作高效甲醛(FA)气体传感器的用途。该路线利用易于处理盐作为前体(锡和氯化锡,本壳体)和作为凝胶化剂的有机环氧化物(环氧丙烷),其导致Cu / SnO2的高度多孔幅材基质。使用XRD,傅里叶变换红外线,UV-VI,Fe-SEM,TEM / HRTEM和eDAX分析所得Cu / SnO(2)Xerogels的Xerogel。开发的Xerogels在物理化学和FA气体传感性质中显示出了它们的多功能性。通过SnO2基质中的适当Cu掺杂水平,Chronalld中,传感器工作温度(325-275摄氏度)的降低和气体响应(S = 50-96%)的增强。气体传感的影响是由环氧辅助Cu / SnO2溶胶工艺和随后的形态学和结构性能表示的。

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