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Synthesis and remarkable gas sensing performance of biomorphic tubular porous SnO2 templated from sorghum straw

机译:高粱吸管的生物形状管状多孔SnO2模板的合成与显着气体感应性能

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摘要

Biomorphic porous SnO2 was hydrothermally synthesized at 160 degrees C and post-calcined at 550 degrees C using sorghum straw as biotemplate. The as-obtained tubular porous SnO2 inherited the hierarchical microstructure of sorghum straw with a specific surface area of 28.6 m(2).g(-1) and exhibits remarkable gas sensing performance. After surface modified by Pt nanoparticles, biomorphic SnO2 shows excellent low-temperature hydrogen sensing characteristics with a high sensitivity of 18.2 for 200 ppm hydrogen at 50 degrees C, a short response time of 7 s and excellent selectivity, as a result of the synergism of the unique porous structure of biomorphic SnO2 and the catalytic activity of the loaded Pt nanoparticles.
机译:生物素多孔SnO 2在160℃下水热合成,并使用高粱秸秆在550℃下煅烧作为生物板。 AS获得的管状多孔SnO2遗传了高粱吸管的分层微观结构,比表面积为28.6米(2).g(-1),表现出显着的气体传感性能。 在Pt纳米颗粒改性表面后,生物晶体SnO2显示出优异的低温氢感特性,具有高灵敏度为18.2,氢气为200ppm氢,其短响应时间为7秒,选择性优异,选择性和优异的选择性 生物甲型的独特多孔结构及负载的Pt纳米颗粒的催化活性。

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