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Effects of SnO_2 Doping on the Performance of ZnO Porous Thick Film Gas Sensors

机译:SnO_2掺杂对ZnO多孔厚膜气体传感器性能的影响

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By using a unique hydrothermal hot-press (HHP) technique, ZnO and ZnO/SnCh composite porous nanosolids (the content of SnO_2 is 0,1, 5 and 10 wt.%, respectively) were prepared. Furthermore, four kinds of gas sensors were fabricated by using ZnO (the sensor denoted as ZSO) and ZnO/SnO_2 composite (denoted as ZS1, ZS5 and ZS10 respectively) porous nanosolids. The intrinsic resistance and gas sensing performance of sensors ZSO, ZS1, ZS5 and ZS10 to ethanol and acetone were tested. By comparing with that of ZSO, the sensors ZS1, ZS5 and ZS10 have obviously lower intrinsic resistance and working temperature, and their selectivity to ethanol was also improved. The reason for above results has been analyzed on the basis of micro-morphology observations.
机译:通过使用独特的水热热压(HHP)技术,制备了ZnO和ZnO / SnCh复合多孔纳米固体(SnO_2的含量分别为0.1、5和10 wt。%)。此外,通过使用ZnO(传感器表示为ZSO)和ZnO / SnO_2复合材料(分别表示为ZS1,ZS5和ZS10)多孔纳米固体,制造了四种气体传感器。测试了传感器ZSO,ZS1,ZS5和ZS10对乙醇和丙酮的固有电阻和气体传感性能。与ZSO相比,传感器ZS1,ZS5和ZS10具有明显更低的固有电阻和工作温度,并且对乙醇的选择性也得到了提高。以上结果的原因已经在微观形态学观察的基础上进行了分析。

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