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基于大豆衍生的氮硫共掺杂碳负载均匀分散 CoS 的双功能氧电催化剂和超级电容器。

Homogeneously Dispersed CoS Anchored on Nitrogen and Sulfur Co-Doped Carbon Derived from Soybean as Bifunctional Oxygen Electrocatalysts and Supercapacitors.

机构信息

Key Laboratory of Bio-Inspired Smart Interfacial Science and Technology of Ministry of Education, School of Chemistry , Beihang University , Beijing 100191 , P. R. China.

出版信息

ACS Appl Mater Interfaces. 2018 May 16;10(19):16436-16448. doi: 10.1021/acsami.8b01592. Epub 2018 May 4.

DOI:10.1021/acsami.8b01592
PMID:29613758
Abstract

Developing low-cost and highly active multifunctional electrocatalysts to replace noble metal catalysts is crucial for the commercialization of future clean energy technology. Herein, homogeneous CoS nanoparticles anchored on nitrogen and sulfur co-doped porous carbon nanomaterials (CoS@NSCs) are fabricated by pyrolysis of natural soybean treated with cobalt nitrate. The unique porous structures of the soybean are utilized to provide space for the oxidation and complexation reactions for cobalt compounds, thus leading to in situ generation of homogenously dispersed cobalt sulfide nanoparticles that anchored on the N,S co-doped carbon framework. Because of the coupling effect of cobalt sulfide and doping heteroatoms, CoS@NSC-800 not only displays excellent electrocatalytic performances with low overpotential and high current density toward both oxygen reduction reaction and oxygen evolution reaction comparable to the commercial Pt/C catalyst and IrO catalyst, but also might be a promising candidate for high-performance supercapacitors. The method for the preparation of the multifunctional hybrids is simple but effective for the formation of uniformly distributed metal sulfide nanoparticles anchored on carbon materials, therefore providing a new perspective for the design and synthesis of multifunctional electrocatalysts for electrochemical energy conversion and storage at a large scale.

摘要

开发低成本、高活性的多功能电催化剂来替代贵金属催化剂对于未来清洁能源技术的商业化至关重要。在此,通过用硝酸钴处理的天然大豆的热解,制备了锚定在氮和硫共掺杂多孔碳纳米材料(CoS@NSCs)上的均匀 CoS 纳米粒子。大豆独特的多孔结构被用来为钴化合物的氧化和络合反应提供空间,从而导致均匀分散的硫化钴纳米粒子原位生成,锚定在 N、S 共掺杂的碳骨架上。由于钴硫化物和掺杂杂原子的耦合效应,CoS@NSC-800 不仅对氧还原反应和氧析出反应表现出优异的电催化性能,具有低过电势和高电流密度,可与商业 Pt/C 催化剂和 IrO 催化剂相媲美,而且可能是高性能超级电容器的有前途的候选材料。这种多功能杂化物的制备方法简单有效,可形成均匀分布的金属硫化物纳米粒子锚定在碳材料上,因此为电化学能量转换和存储的多功能电催化剂的设计和合成提供了新的视角。

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