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一步法简便合成钴磷化物用于酸性和碱性介质中的析氢反应催化剂。

One-Step Facile Synthesis of Cobalt Phosphides for Hydrogen Evolution Reaction Catalysts in Acidic and Alkaline Medium.

机构信息

Institute of Materials Research and Engineering (IMRE), A*STAR (Agency for Science, Technology and Research) , 2 Fusionopolis Way , Innovis #08-03, 138634 , Singapore.

School of Applied Science , Temasek Polytechnic , 21 Tampines Avenue 1 , 529757 , Singapore.

出版信息

ACS Appl Mater Interfaces. 2018 May 9;10(18):15673-15680. doi: 10.1021/acsami.8b01491. Epub 2018 Apr 30.

Abstract

Catalysts for hydrogen evolution reaction are in demand to realize the efficient conversion of hydrogen via water electrolysis. In this work, cobalt phosphides were prepared using a one-step, scalable, and direct gas-solid phosphidation of commercially available cobalt salts. It was found that the effectiveness of the phosphidation reaction was closely related to the state of cobalt precursors at the reaction temperature. For instance, a high yield of cobalt phosphides obtained from the phosphidation of cobalt(II) acetate was related to the good stability of cobalt salt at the phosphidation temperature. On the other hand, easily oxidizable salts (e.g., cobalt(II) acetylacetonate) tended to produce a low amount of cobalt phosphides and a large content of metallic cobalt. The as-synthesized cobalt phosphides were in nanostructures with large catalytic surface areas. The catalyst prepared from phosphidation of cobalt(II) acetate exhibited an improved catalytic activity as compared to its counterpart derived from phosphidation of cobalt(II) acetylacetonate, showing an overpotential of 160 and 175 mV in acidic and alkaline electrolytes, respectively. Both catalysts also displayed an enhanced long-term stability, especially in the alkaline electrolyte. This study illustrates the direct phosphidation behavior of cobalt salts, which serve as a good vantage point in realizing the large-scale synthesis of transition-metal phosphides for high-performance electrocatalysts.

摘要

用于析氢反应的催化剂是通过水电解实现高效转化氢气所必需的。在这项工作中,使用一步法、可扩展且直接的商业钴盐气固磷化法制备了磷化钴。研究发现,磷化反应的有效性与反应温度下钴前体的状态密切相关。例如,通过乙酸钴的磷化得到的高收率的磷化钴与该盐在磷化温度下的良好稳定性有关。另一方面,易氧化的盐(例如,二乙酰丙酮钴)往往会产生较少的磷化钴和较多的金属钴。所合成的磷化钴具有大的催化表面积的纳米结构。与由二乙酰丙酮钴磷化得到的对应物相比,由乙酸钴磷化得到的催化剂表现出改进的催化活性,在酸性和碱性电解液中分别表现出 160 和 175 mV 的过电势。这两种催化剂还表现出增强的长期稳定性,特别是在碱性电解液中。这项研究说明了钴盐的直接磷化行为,这为实现用于高性能电催化剂的过渡金属磷化物的大规模合成提供了一个良好的起点。

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