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A novel nano-Au-assembled gas sensor for atmospheric oxygen determination

机译:新型纳米金组装气体传感器,用于测定大气中的氧气

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摘要

A novel nano-Au-assembled gas sensor was fabricated and first used to determine atmospheric oxygen. The special characteristics of nano-Au resulted in a high catalytic activity for the reduction of oxygen. On determining 20.9% oxygen by cyclic voltammetry, on a nano-Au-assembled Pt disk electrode the overpotential decreased greatly and the reduction current of oxygen increased to about 4.4 times that on a bare gas sensor. For the determination of atmospheric oxygen by using this novel nano-au-assembled gas sensor with the amperometric i-t curve method, the linear range was from 0.4 to 30.0%, the linear equation was y = 1.11x - 0.63 with a correlation coefficient of 0.9931, the sensitivity was 1.11 x 10~(-7) A cm~(-2) per 1% v/v, the detection limit was 0.2%, the response time was about 12 s and the relative standard deviation was 2.9% on determining the background value of atmospheric oxygen. It was also found that the nano-au assembled gas sensor had good reproductibility and stability. These results demonstrated that this sensor for the determination of atmospheric oxygen was fat, sensitive, accurate and convenient.
机译:制造了一种新型的纳米金组装的气体传感器,并首先用于确定大气中的氧气。纳米金的特殊特性导致了高的催化活性以减少氧气。通过循环伏安法测定20.9%的氧气时,在纳米Au组装的Pt圆盘电极上,过电势大大降低,氧气的还原电流增加到裸气体传感器的4.4倍。对于使用电流安培it曲线法的新型纳米金组装气体传感器测定大气中的氧气,线性范围为0.4至30.0%,线性方程为y = 1.11x-0.63,相关系数为0.9931灵敏度为1.11 x 10〜(-7)A cm〜(-2)每1%v / v,检出限为0.2%,响应时间约为12 s,相对标准偏差为2.9%大气氧的背景值。还发现纳米金组装的气体传感器具有良好的再现性和稳定性。这些结果表明,这种用于测定大气中氧气的传感器是脂肪,灵敏,准确和方便的。

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