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钴镍氮磷掺杂碳纳米管作为高效氧还原反应的催化剂

CoNi-N/P-Doped Carbon Nanotubes as Catalysts for Efficient Oxygen Reduction Reaction.

作者信息

Zhang Da, Ding Ruixin, He Yan

机构信息

College of Electromechanical Engineering, Qingdao University of Science and Technology, Qingdao 266061, China.

Qingdao University, Qingdao 266061, China.

出版信息

Langmuir. 2024 Aug 13;40(32):17071-17080. doi: 10.1021/acs.langmuir.4c02051. Epub 2024 Jul 30.

Abstract

Transition metals (TMs) supported by heteroatom-doped carbon materials are considered to be the potential alternatives to the Pt/C catalyst owing to their low cost, outstanding electrocatalytic efficiency, and excellent electrochemical durability. In this paper, N/P-doped carbon nanotube (CNT) (N/P-CNT)-supported monometallic (Co, Ni) and bimetallic (CoNi) catalysts were synthesized by one-step pyrolysis using diammonium hydrogen phosphate, 2-methylimidazole and organometallic salts as precursors, and the CNT as the catalyst carrier; the effects of transition TM types and pyrolysis temperature () on the microstructure and electrochemical properties were explored. The analysis exhibited that the CoNi bimetallic catalyst was superior to both Co and Ni monometallic catalysts, and the catalysts pyrolyzed at 900 °C exhibited a better graphitization degree. The optimal CoNi-N/P-CNT-900 displayed remarkable oxygen reduction reaction electrocatalytic performance with a half-wave potential () of 0.86 V and excellent methanol tolerance and stability. Moreover, the Zn-air battery coated with CoNi-N/P-CNT-900 demonstrated a larger open circuit voltage of 1.577 V, a larger peak power density of 212.89 mW cm at 357.8 mA cm, as well as a higher specific capacity of 799 mA h g, superior to that of the Pt/C catalyst (1.492 V, 96.04 mW cm at 216.8 mA cm, 735 mA h g), showing outstanding practical value. This study is expected to promote the commercialization of the electrocatalysts.

摘要

杂原子掺杂碳材料负载的过渡金属(TMs)因其低成本、出色的电催化效率和优异的电化学耐久性,被认为是Pt/C催化剂的潜在替代品。本文以磷酸氢二铵、2-甲基咪唑和有机金属盐为前驱体,以碳纳米管(CNT)为催化剂载体,通过一步热解合成了N/P掺杂碳纳米管(N/P-CNT)负载的单金属(Co、Ni)和双金属(CoNi)催化剂;探讨了过渡TM类型和热解温度()对微观结构和电化学性能的影响。分析表明,CoNi双金属催化剂优于Co和Ni单金属催化剂,在900℃热解的催化剂表现出更好的石墨化程度。最佳的CoNi-N/P-CNT-900表现出显著的氧还原反应电催化性能,半波电位()为0.86V,具有优异的甲醇耐受性和稳定性。此外,涂覆有CoNi-N/P-CNT-900的锌空气电池显示出1.577V的更大开路电压、在357.8mA cm时212.89mW cm的更大峰值功率密度以及799mA h g的更高比容量,优于Pt/C催化剂(在216.8mA cm时为1.492V、96.04mW cm,735mA h g),显示出突出的实用价值。本研究有望推动电催化剂的商业化。

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