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首页> 外文期刊>Nanotechnology >Fabrication and gas sensitivity of SnO2 hierarchical films with interwoven tubular conformation by a biotemplate-directed sol-gel technique
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Fabrication and gas sensitivity of SnO2 hierarchical films with interwoven tubular conformation by a biotemplate-directed sol-gel technique

机译:通过生物模板导向的溶胶-凝胶技术制备的具有交织管状结构的SnO2分层薄膜及其气体敏感性

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摘要

A facile and versatile method is reported to fabricate the interwoven tubular hierarchy of SnO2 films using a biotemplate eggshell membrane ( ESM) combined sol - gel approach. In order to promote the crystallization of SnO2 films, calcination is necessary and can adjust the size of the building units in the range 2.8-26 nm. Under the direction of ESM biomacromolecules, SnO2 nanocrystallites come into being and assemble into nanotubes, and further pattern porous hierarchical meshworks to faithfully retain the morphology of natural ESM. The sensor performance of as-prepared biomorphic SnO2 was measured for ethanol, liquefied petroleum gas (LPG), H2S, and gasoline. It is found that the SnO2 hierarchical films obtained have a good selectivity for LPG with a working temperature above 300 degrees C while for ethanol below 270.
机译:据报道,一种简便而通用的方法是使用生物模板蛋壳膜(ESM)结合溶胶-凝胶法来制造SnO2薄膜的交织管状结构。为了促进SnO2薄膜的结晶,必须进行煅烧,并且可以在2.8-26 nm的范围内调节构建单元的大小。在ESM生物大分子的指导下,SnO2纳米微晶应运而生并组装成纳米管,并进一步构图多孔的分层网状结构,以忠实地保留天然ESM的形态。测量了乙醇,液化石油气(LPG),H2S和汽油中制备的生物形态SnO2的传感器性能。发现所获得的SnO2分层膜对LPG在工作温度高于300摄氏度而对乙醇低于270时具有良好的选择性。

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