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Investigation on synthesis and excellent gas-sensing properties of hierarchical Au-loaded SnO_2 nanoflowers

机译:负载金的SnO_2纳米级花的合成及其优异的气敏性能研究

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The hierarchical Au-loaded SnO2 nanoflowers were synthesized using a new developed self-reductive hydrothermal method, of which the gas-sensing properties were enhanced significantly. The SnO2 hierarchical nanoflowers were composed of well-defined nanosheets with a specific surface area of around 84 m(2)/g. Gas sensors made of pure and Au-doped SnO2 were fabricated, and their gas-sensing properties were characterized. The 1.0 at.% Au-loaded SnO2 sensor prepared by the new developed self-reductive method showed much more excellent selectivity toward ethanol at 200 degrees C than the one prepared with the conventional hydrothermal method. Its response to ethanol was around 3 times higher than that of the pure SnO2 sensor. A very wide detection range of 1-500 ppm for ethanol, good repeatability, and long-term stability were also approved.
机译:采用新开发的自还原水热法合成了金级SnO2纳米级花,其气敏性能得到了显着提高。 SnO2分层纳米花由定义明确的纳米片组成,其比表面积约为84 m(2)/ g。制备了由纯Sn和Au掺杂的SnO2制成的气体传感器,并表征了它们的气体传感特性。通过新开发的自还原方法制备的1.0 at。%Au负载SnO2传感器在200摄氏度下对乙醇的选择性比传统水热方法制备的传感器高得多。它对乙醇的响应大约是纯SnO2传感器的3倍。还批准了乙醇的1-500 ppm的非常宽的检测范围,良好的重复性和长期稳定性。

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