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I–V characteristics of a methanol concentration sensor for direct methanol fuel cell (DMFC) by using catalyst electrode of Pt dots

机译:使用Pt点的催化剂电极的直接甲醇燃料电池(DMFC)甲醇浓度传感器的I–V特性

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In this work, the methanol sensors were fabricated by using Pt dot catalyst electrode and the level of electrochemical response was analyzed. This kind of sensors can be applicable to sensing the methanol concentration in real-time. When we measured the methanol sensor with 5 nm of Pt dot, we could get 2.00 106, 3.06 10 and 6.25 106 A of electric current value for the methanol concentration of 1, 2 and 3 mole, respectively. The measured voltage was 1 V. To optimize the sensitivity level of Pt dot catalyst electrode, the electrodes were made in H-grid shape. The distance between electrode branches was designed to be 80, 150 and 300 lm, respectively. When we measured the electric current–voltage characteristics of methanol sensor with 2 M of methanol, it was 3.06 106, 2.02 106 and 1.50 10 A, for 80, 150 and 200 lm, respectively. Thus it is suggested that more efficient response of methanol sensing is possible when the distance between electrodes is reduced.
机译:在这项工作中,使用Pt点催化剂电极制造了甲醇传感器,并分析了电化学响应的水平。这种传感器可适用于实时检测甲醇浓度。当我们测量Pt点为5 nm的甲醇传感器时,对于1、2和3摩尔的甲醇浓度,我们可以分别得到2.00 106、3.06 10和6.25 106 A的电流值。测得的电压为1V。为了优化Pt点催化剂电极的灵敏度,将电极制成H形。电极分支之间的距离分别设计为80、150和300 lm。当我们用2 M的甲醇测量甲醇传感器的电流-电压特性时,对于80、150和200 lm,分别为3.06 106、2.02 106和1.50 10A。因此建议当电极之间的距离减小时,甲醇感测的更有效响应是可能的。

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