多孔性
模板
材料科学
纳米颗粒
丁醇
化学工程
金属有机骨架
纳米技术
扩散
多孔介质
金属
正丁醇
气体扩散
比表面积
化学
有机化学
复合材料
催化作用
吸附
冶金
工程类
物理
热力学
乙醇
燃料电池
作者
Mingjing Wang,Zhurui Shen,Xiaodong Zhao,Fanpeng Duanmu,Huijun Yu,Huiming Ji
标识
DOI:10.1016/j.jhazmat.2019.02.098
摘要
Porous metal oxides are promising materials for VOCs (volatile organic compounds) chemical sensors, because they have large specific surface areas and enough internal space for the fast gas diffusion. Recently, metal-organic framework (MOF) materials with varied shapes and sizes have been regarded as good templates for preparing porous metal oxides. Herein, four kinds of Co-MOFs were prepared by altering the ratios of Co2+ ions and 2-methylimidazole at room temperature, which exhibited well-controlled shapes. Then, corresponding porous Co3O4 assembled from nanoparticles was acquired by heating Co-MOFs, and showed a good sensing performance for n-butanol, with a response up to 21.0 toward 100 ppm n-butanol. Moreover, it is found that the shape and the size of Co3O4 assemblies can significantly influence their sensing performances. For porous Co3O4 assemblies, when the nanoparticles are small enough (˜10 nm), a porous structure with a larger proportion of the nanoparticles close to its surface tends to show a better gas-sensing performance. The findings can be used in the design of gas-sensing materials in the future.
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