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介孔层状尖晶石型锌锰氧化物纳米晶稳定氮掺杂石墨烯作为氧还原反应的有效催化剂。

Mesoporous layered spinel zinc manganese oxide nanocrystals stabilized nitrogen-doped graphene as an effective catalyst for oxygen reduction reaction.

机构信息

Advanced Materials Institute of BIN Convergence (BK21 Plus Global), Department of BIN Convergence Technology, Chonbuk National University, Jeonju, Jeonbuk 54896, Republic of Korea.

Advanced Materials Institute of BIN Convergence (BK21 Plus Global), Department of BIN Convergence Technology, Chonbuk National University, Jeonju, Jeonbuk 54896, Republic of Korea.

出版信息

J Colloid Interface Sci. 2019 Jun 1;545:43-53. doi: 10.1016/j.jcis.2019.03.015. Epub 2019 Mar 7.

DOI:10.1016/j.jcis.2019.03.015
PMID:30870729
Abstract

The design of low-cost, highly efficient, and the durable catalyst is essential to replace commercial platinum metal-based catalysts for the oxygen reduction reaction (ORR) in fuel cell applications. Herein, a novel mesoporous hybrid based on nitrogen-doped graphene nanosheets-stabilized layered spinel zinc manganese oxide (ZnMnO-NG) is successfully engineered and applied as an effective catalyst to accelerate the ORR process in alkaline medium. Electrochemical performance analysis of this catalyst shows excellent catalytic activity with high current density, positive onset potential (-0.013 V), and positive half-wave potential (-0.12 V), which are relative to the commercial Pt/C in 0.1 M KOH electrolyte. The kinetic study of the synthesized catalyst towards ORR demonstrates a direct 4e transfer pathway. The methanol tolerance and long-term stability test suggest its superior behavior to Pt/C. The excellent performance of the ZnMnO-NG is attributed to the synergistic effects of nanosized ZnMnO nanocrystals and NG nanosheets, which effectively improve the electroactive surface area, conductivity, diffusion channels, and mass transfer ability. This result suggests that the resulting catalyst could be used as a potential alternative of Pt-based catalysts towards ORR application.

摘要

设计低成本、高效率和耐用的催化剂对于替代商业铂金属基催化剂在燃料电池中的氧还原反应(ORR)至关重要。在此,成功设计并应用了一种新型介孔杂化材料,即氮掺杂石墨烯纳米片稳定的层状尖晶石锌锰氧化物(ZnMnO-NG),作为一种有效催化剂,可在碱性介质中加速 ORR 过程。该催化剂的电化学性能分析表明,其具有高电流密度、正起始电位(-0.013 V)和正半波电位(-0.12 V)等优异的催化活性,与商业 Pt/C 在 0.1 M KOH 电解质中的性能相当。对合成催化剂进行的 ORR 动力学研究表明,其具有直接的 4e 转移途径。甲醇耐受性和长期稳定性测试表明,其性能优于 Pt/C。ZnMnO-NG 的优异性能归因于纳米 ZnMnO 纳米晶体和 NG 纳米片的协同效应,这有效地提高了电活性表面积、导电性、扩散通道和质量传递能力。该结果表明,所得催化剂可作为替代 Pt 基催化剂用于 ORR 应用的潜在选择。

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