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MOF-Templated Synthesis of Porous Co3O4 Concave Nanocubes with High Specific Surface Area and Their Gas Sensing Properties

机译:具有高比表面积的多孔Co3O4凹面纳米立方体的MOF模板合成及其气敏特性

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Porous metal oxides nanomaterials with controlled morphology have received great attention because of their promising applications in catalysis, energy storage and conversion, gas sensing, etc. In this paper, porous Co3O4 concave nanocubes with extremely high specific surface area (120.9 m~2·g~(-1)) were synthesized simply by calcining Co-based metal—organic framework (Co- MOF, ZIF-67) templates at the optimized temperature (300 °C), and the formation mechanism of such highly porous structures as well as the influence of the calcination temperature are well explained by taking into account thermal behavior and intrinsic structural features of the Co-MOF precursors. The gas-sensing properties of the as-synthesized porous Co3O4 concave nanocubes were systematically tested towards volatile organic compounds including ethanol, acetone, toluene, and benzene. Experimental results reveal that the porous Co3O4 concave nanocubes present the highest sensitivity to ethanol with fast response/recovery time (< 10 s) and a low detection limit (at least 10 ppm). Such outstanding gas sensing performance of the porous Co3O4 concave nanocubes benefits from their high porosity, large specific surface area, and remarkable capabilities of surface-adsorbed oxygen.
机译:形态可控的多孔金属氧化物纳米材料因其在催化,储能和转化,气体传感等方面的广阔应用前景而备受关注。本文研究了具有极高比表面积(120.9 m〜2·g)的多孔Co3O4凹形纳米立方体。 〜(-1))是通过在最佳温度(300°C)下煅烧Co基金属-有机骨架(Co-MOF,ZIF-67)模板而简单合成的,这种高孔隙结构的形成机理以及考虑到热行为和Co-MOF前体的固有结构特征,可以很好地说明煅烧温度的影响。系统地测试了合成的多孔Co3O4凹面纳米立方体对挥发性有机化合物(包括乙醇,丙酮,甲苯和苯)的气敏特性。实验结果表明,多孔Co3O4凹形纳米立方体对乙醇的灵敏度最高,响应/恢复时间短(<10 s),检出限低(至少10 ppm)。多孔Co3O4凹形纳米立方体具有如此出色的气体传感性能,这得益于其高孔隙率,大比表面积以及表面吸附的氧气的卓越性能。

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