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Preparation of LaMnO_3-CNF and its Activity for Oxygen Electrode Reaction in 0.1 mol dm~(-3) KOH Solution

机译:兰诺_3-CNF的制备及其在0.1mol DM〜(-3)KOH溶液中的氧电极反应的活性及其活性

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A composite catalyst (LaMnO_3-CNF), containing LaMnO_3 and carbon nanofiber (CNF), was prepared by a co-precipitation method for use as a cathode catalyst in metal hydride (MH)/air battery. The catalytic activities for both the oxygen reduction reaction (ORR) and the oxygen evolution reaction (OER) were investigated in aqueous KOH. The onset potential for the ORR of CNF and the composite catalyst was estimated to be 0.84 V and 0.91 V vs. a reversible hydrogen electrode (RHE), respectively. To estimate the onset potential for the OER, in-situ OER measurements were carried out using a dissolved oxygen sensor during chronoamperometry at the charging potential of a MH/air battery. The onset potential was found to be 1.65 V for CNF and 1.60 V for the composite catalyst.
机译:通过用作金属氢化物(MH)/空气电池中的阴极催化剂,制备含有兰诺-3和碳纳米纤维(CNF)的复合催化剂(LAMNO_3-CNF)。在KOH水溶液中研究了氧还原反应(ORR)和氧气进化反应(OER)的催化活性。 CNF和复合催化剂的发病电位估计为0.84V和0.91V与可逆氢电极(RHE)。为了估计OER的发作电位,在计时率期间在MH /空气电池的充电电位下使用溶解的氧传感器进行原位OER测量。对复合催化剂的CNF和1.60V的开始,发病潜力为1.65V。

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