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首页> 外文期刊>Electrochemistry communications >Highly active Co-doped LaMnO3 perovskite oxide and N-doped carbon nanotube hybrid bi-functional catalyst for rechargeable zinc-air batteries
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Highly active Co-doped LaMnO3 perovskite oxide and N-doped carbon nanotube hybrid bi-functional catalyst for rechargeable zinc-air batteries

机译:用于可充电锌空气电池的高活性共掺杂LaMnO3钙钛矿氧化物和N掺杂碳纳米管混合双功能催化剂

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摘要

Herein, non-precious cobalt doped lanthanum manganese perovskite oxide nanoparticles are used as a growth substrate for nitrogen-doped carbon nanotubes to form efficient and durable hybrid hi-functional catalyst (LMCO/NCNT). LMCO/NCNT demonstrates significantly enhanced onset and half-wave oxygen reduction reaction (ORR) potentials (-0.11 and -0.24 V vs. SCE, respectively), and oxygen evolution reaction (OER) current density (27 mA cm(-2) at 0.9 V vs. SCE). Likewise, practical rechargeable zinc-air battery testing using atmospheric air reveals superior discharge voltages obtained with LMCO/NCNT, particularly at current densities higher than 30 mA cm(-2), and significantly lower charge voltages at all current densities tested, compared to state-of-art commercial platinum on carbon catalyst In addition, very stable charge and discharge voltages of 2.2 and 1.0 V, respectively, are obtained over 60 cycles. The excellent performance and durability of the hybrid catalyst are attributed to very uniformly distributed LMCO nanopartides on the surface of NCNT resulting in enhanced surface area and material utilization. (C) 2015 Elsevier B.V. All rights reserved.
机译:在此,将非贵重的钴掺杂镧锰钙钛矿氧化物纳米颗粒用作氮掺杂的碳纳米管的生长基质,以形成有效且耐用的杂化高功能催化剂(LMCO / NCNT)。 LMCO / NCNT表现出显着增强的起跳和半波氧还原反应(ORR)电势(分别相对于SCE为-0.11和-0.24 V)和氧释放反应(OER)电流密度(27 mA cm(-2)) 0.9 V vs.SCE)。同样,使用大气进行的实用可充电锌空气电池测试显示,与状态相比,LMCO / NCNT可获得更高的放电电压,特别是在电流密度高于30 mA cm(-2)的情况下,并且在所有测试电流密度下的充电电压均显着降低最先进的商业化的碳载铂催化剂此外,在60个循环中,分别获得了2.2和1.0 V的非常稳定的充电和放电电压。杂化催化剂的出色性能和耐用性归因于NCNT表面上分布非常均匀的LMCO纳米颗粒,从而提高了表面积和材料利用率。 (C)2015 Elsevier B.V.保留所有权利。

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