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Co 纳米粒子/Co、N、S 三掺杂石墨烯模板由原位形成的 Co、S 共掺杂 g-CN 作为用于全水解的活性双功能电催化剂。

Co Nanoparticles/Co, N, S Tri-doped Graphene Templated from In-Situ-Formed Co, S Co-doped g-CN as an Active Bifunctional Electrocatalyst for Overall Water Splitting.

机构信息

Department of Chemistry, College of Science, Huazhong Agricultural University , 430070, Wuhan, P. R. China.

Institute for Interdisciplinary Research, Jianghan University , 430056, Wuhan, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2017 Aug 30;9(34):28566-28576. doi: 10.1021/acsami.7b08138. Epub 2017 Aug 21.

Abstract

The development of high-performance electrocatalyst with earth-abundant elements for water-splitting is a key factor to improve its cost efficiency. Herein, a noble metal-free bifunctional electrocatalyst was synthesized by a facile pyrolysis method using sucrose, urea, Co(NO) and sulfur powder as raw materials. During the fabrication process, Co, S co-doped graphitic carbon nitride (g-CN) was first produced, and then this in-situ-formed template further induced the generation of a Co, N, S tri-doped graphene coupled with Co nanoparticles (NPs) in the following pyrolysis process. The effect of pyrolysis temperature (700, 800, and 900 °C) on the physical properties and electrochemical performances of the final product was studied. Thanks to the increased number of graphene layer encapsulated Co NPs, higher graphitization degree of carbon matrix and the existence of hierarchical macro/meso pores, the composite electrocatalyst prepared under 900 °C presented the best activity for both hydrogen evolution reaction (HER) and oxygen evolution reaction (OER) with outstanding long-term durability. This work presented a facile method for the fabrication of non-noble-metal-based carbon composite from in-situ-formed template and also demonstrated a potential bifunctional electrocatalyst for the future investigation and application.

摘要

开发具有丰富元素的高性能电催化剂用于水分解是提高其成本效益的关键因素。在此,通过简便的热解方法,使用蔗糖、尿素、Co(NO) 和硫粉作为原料合成了一种无贵金属的双功能电催化剂。在制备过程中,首先生成 Co、S 共掺杂石墨相氮化碳(g-CN),然后在随后的热解过程中,这种原位形成的模板进一步诱导 Co、N、S 三掺杂石墨烯与 Co 纳米颗粒(NPs)的生成。研究了热解温度(700、800 和 900°C)对最终产物物理性能和电化学性能的影响。得益于石墨烯层包裹 Co NPs 的数量增加、碳基质更高的石墨化程度和分层的大/介孔的存在,在 900°C 下制备的复合材料在析氢反应(HER)和析氧反应(OER)中均表现出最佳的活性,具有出色的长期耐久性。这项工作提出了一种从原位形成的模板制备非贵金属基碳复合材料的简便方法,并展示了一种用于未来研究和应用的潜在双功能电催化剂。

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