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采用单源前驱体高效合成氮硫共掺杂科琴黑以增强氧还原反应活性

Efficient Synthesis of Nitrogen- and Sulfur-co-Doped Ketjenblack with a Single-Source Precursor for Enhancing Oxygen Reduction Reaction Activity.

作者信息

Cheng Guang-Chun, Li Guang-Lan, Liu Cai-Di, Yuan Li-Fang, Chen Wen-Wen, Hao Ce

机构信息

State Key Laboratory of Fine Chemicals Institution, Dalian University of Technology, Panjin, 124221, P.R. China.

出版信息

Chemistry. 2017 Mar 13;23(15):3674-3682. doi: 10.1002/chem.201604930. Epub 2017 Feb 14.

DOI:10.1002/chem.201604930
PMID:28066948
Abstract

Promoting the oxygen reduction reaction (ORR) catalytic activities of cost-effective catalysts is of great significance for the development of various energy conversion and storage systems. Herein, we describe the preparation of a highly active N- and S-co-doped ketjenblack (Kb) by facile pyrolysis of a mixture of thiourea and Kb in the presence of FeCl ⋅6 H O followed by an acid-leaching process. This novel synthetic approach was rationally designed with the consideration that thiourea could easily introduce both N and S heteroatoms into the carbon matrix by a heat-treatment method by releasing plentiful reactive N- and S-containing gases, which could simultaneously optimize the porous structure of the resultant catalyst. Physical characterization revealed that N and S were homogeneously incorporated into the nanostructure of Kb and formed a hierarchical porous structure with a high specific surface area. The N/S-Kb catalyst showed impressive ORR activity, with an onset potential of 0.08 V at 0.1 mA cm , which is 20 mV more positive than that of commercial 20 wt. % Pt/C catalyst. This was coupled with long-term durability and superior methanol tolerance in alkaline media. The improved ORR performance can be mainly ascribed to synergistic contributions of highly efficient active sites arising from high contents of thiophene S and pyridinic N along with the high specific surface area and the favorable mass-transport properties arising from the hierarchical porous structure. The remarkable ORR performance and facile preparation method make the N/S-Kb catalyst a promising substitute for Pt in electrochemical energy devices.

摘要

提高具有成本效益的催化剂的氧还原反应(ORR)催化活性对于各种能量转换和存储系统的发展具有重要意义。在此,我们描述了一种高活性氮和硫共掺杂科琴黑(Kb)的制备方法,即通过在FeCl₃·6H₂O存在下将硫脲和Kb的混合物进行简便的热解,然后进行酸浸过程。这种新颖的合成方法经过合理设计,考虑到硫脲可以通过热处理方法通过释放大量含活性氮和硫的气体,轻松地将氮和硫杂原子引入碳基质中,这可以同时优化所得催化剂的多孔结构。物理表征表明,氮和硫均匀地掺入Kb的纳米结构中,并形成了具有高比表面积的分级多孔结构。N/S-Kb催化剂表现出令人印象深刻的ORR活性,在0.1 mA cm⁻²时起始电位为0.08 V,比商业20 wt.% Pt/C催化剂的起始电位正20 mV。这与在碱性介质中的长期耐久性和优异的甲醇耐受性相结合。ORR性能的提高主要归因于噻吩硫和吡啶氮的高含量产生的高效活性位点的协同作用,以及分级多孔结构产生的高比表面积和良好的传质性能。出色的ORR性能和简便的制备方法使N/S-Kb催化剂成为电化学能量装置中铂的有前途的替代品。

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