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热处理的碳载铁(II)酞菁氧还原催化剂:使用X射线吸收光谱法阐明结构-活性关系

Heat treated carbon supported iron(ii)phthalocyanine oxygen reduction catalysts: elucidation of the structure-activity relationship using X-ray absorption spectroscopy.

作者信息

Miller Hamish A, Bellini Marco, Oberhauser Werner, Deng Xin, Chen Hengquan, He Qinggang, Passaponti Maurizio, Innocenti Massimo, Yang Ruoou, Sun Fanfei, Jiang Zheng, Vizza Francesco

机构信息

Institute of Chemistry of Organometallic Compounds, ICCOM-CNR, Polo Scientifico Area CNR, Via Madonna del Piano 10, 50019 Sesto Fiorentino, Italy.

College of Chemical & Biological Engineering, Zhejiang University, Hangzhou, Zhejiang 310027, P. R. China.

出版信息

Phys Chem Chem Phys. 2016 Dec 7;18(48):33142-33151. doi: 10.1039/c6cp06798k.

Abstract

This paper focuses on studying the influence of the heat treatment on the structure and activity of carbon supported Fe(ii)phthalocyanine (FePc/C) oxygen reduction reaction (ORR) catalysts under alkaline conditions. The FePc macrocycle was deposited onto ketjen black carbon and heated treated for 2 hours under inert atmosphere (Ar) at different temperatures (400, 500, 600, 700, 800, 900 and 1000 °C). The atomic structure of Fe in each sample has been determined by XAS and correlated to the activity and ORR mechanisms determined in electrochemical half cells and in a complete H/O anion exchange membrane fuel cells (AEM-FC). The results show that the samples prepared at 600 and 700 °C have the highest electrochemical catalytic activity for the ORR, consistent with the findings that the FeN active sites are thermally stable up to 700 °C, confirmed by both XANES linear combination fittings and EXAFS fittings. Upon annealing at temperatures above 800 °C, the FeN structure partially decomposes to small iron nanoparticles. The transition from the FeN structure to metallic Fe results in a significant loss in ORR activity and an increase in the production of undesirable HO during catalysis.

摘要

本文着重研究热处理对碱性条件下碳载酞菁铁(FePc/C)氧还原反应(ORR)催化剂的结构和活性的影响。将FePc大环沉积在科琴黑碳上,并在惰性气氛(Ar)中于不同温度(400、500、600、700、800、900和1000℃)下进行2小时的热处理。通过X射线吸收光谱(XAS)确定了每个样品中Fe的原子结构,并将其与在电化学半电池和完整的氢/氧阴离子交换膜燃料电池(AEM-FC)中测定的活性和ORR机理相关联。结果表明,在600和700℃制备的样品对ORR具有最高的电化学催化活性,这与X射线吸收近边结构(XANES)线性组合拟合和扩展X射线吸收精细结构(EXAFS)拟合所证实的FeN活性位点在高达700℃时热稳定的发现一致。在800℃以上温度退火后,FeN结构部分分解为小的铁纳米颗粒。从FeN结构向金属Fe的转变导致ORR活性显著损失,并在催化过程中增加了不良的HO的产生。

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