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高效合成用于质子交换膜燃料电池阴极催化剂的铂钴纳米线。

Efficient synthesis of Pt-Co nanowires as cathode catalysts for proton exchange membrane fuel cells.

作者信息

Liu Zhikun, Yin Yanhong, Yang Daijun, Zhang Cunman, Ming Pingwen, Li Bing, Yang Shuting

机构信息

School of Chemistry and Chemical Engineering, Henan Normal University Xinxiang Henan 453007 China

Collaborative Innovation Center of Henan Province for Motive Power and Key Materials, Henan Normal University Xinxiang Henan 453007 China.

出版信息

RSC Adv. 2020 Feb 10;10(11):6287-6296. doi: 10.1039/d0ra00264j. eCollection 2020 Feb 7.

Abstract

A simple and efficient method was used to prepare highly active and durable carbon-supported ultrathin Pt-Co nanowires (NWs) as oxygen reduction reaction (ORR) catalysts for the cathode in a proton exchange membrane fuel cell (PEMFC). Chromium hexacarbonyl plays a significant role in making Pt and Co form an alloyed NW, which acts as both a reducing agent and a structure directing agent. The nanocrystal exhibits a uniform nanowire morphology with a diameter of 2 nm and a length of 30 nm. In half cell tests, the Pt-Co NWs/C catalyst has a mass activity of 291.4 mA mg , which is significantly better than commercial Pt/C catalysts with 85.5 mA mg . And after the accelerated durability test (ADT), Pt-Co NWs/C shows an electrochemically active surface area (ECSA) loss of 19.1% while the loss in the commercial catalyst is 41.8%. Also, the membrane electrode assembly (MEA) was prepared using Pt-Co NWs/C as the cathode catalyst, resulting in a maximum power density of 952 mW cm, which is higher than that of Pt/C. These results indicate that the one-dimensional structure of the catalyst prepared herein is favorable to improve the activity and durability, and the application of the catalyst in the MEA is also realized.

摘要

采用一种简单高效的方法制备了高活性且耐用的碳载超薄铂钴纳米线(NWs),作为质子交换膜燃料电池(PEMFC)阴极的氧还原反应(ORR)催化剂。六羰基铬在使铂和钴形成合金纳米线方面发挥了重要作用,它既是还原剂又是结构导向剂。该纳米晶体呈现出直径为2 nm、长度为30 nm的均匀纳米线形态。在半电池测试中,Pt-Co NWs/C催化剂的质量活性为291.4 mA mg,明显优于质量活性为85.5 mA mg的商业Pt/C催化剂。并且经过加速耐久性测试(ADT)后,Pt-Co NWs/C的电化学活性表面积(ECSA)损失为19.1%,而商业催化剂的损失为41.8%。此外,以Pt-Co NWs/C作为阴极催化剂制备了膜电极组件(MEA),其最大功率密度为952 mW cm,高于Pt/C的最大功率密度。这些结果表明,本文制备的催化剂的一维结构有利于提高活性和耐久性,并且该催化剂在MEA中的应用也得以实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/375a/9049649/54dd330eb79c/d0ra00264j-f1.jpg

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