Riaz Muhammad Sohail, Zhao Siwei, Dong Chenlong, Nong Shuying, Zhao Yantao, Iqbal Muhammad Javed, Huang Fuqiang
Beijing National Laboratory for Molecular Sciences and State Key Laboratory of Rare Earth Materials Chemistry and Applications, College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, P. R. China.
Key Laboratory of Cluster Science of Ministry of Education, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing, 100081, P. R. China.
Chemistry. 2020 Jan 27;26(6):1306-1313. doi: 10.1002/chem.201903508. Epub 2020 Jan 21.
Oxygen electrocatalysis is of remarkable significance for electrochemical energy storage and conversion technologies, together with fuel cells, metal-air batteries, and water splitting devices. Substituting noble metal-based electrocatalysts by decidedly effective and low-cost metal-based oxygen electrocatalysts is imperative for the commercial application of these technologies. Herein, a novel strategy is presented to fabricate selenized and phosphorized porous cobalt-nickel oxide microcubes by using a sacrificial ZnO spherical template and the resulting microcubes are employed as an oxygen evolution reaction (OER) electrocatalyst. The selenized samples manifest desirable and robust OER performance, with comparable overpotential at 10 mA cm (312 mV) as RuO (308 mV) and better activity when the current reaches 13.7 mA cm . The phosphorized samples exhibit core-shell structure with low-crystalline oxides inside amorphous phosphides, which ensures superior activity than RuO with the same overpotential (at 10 mA cm ) yet lower Tafel slope. Such a surface doping method possibly will provide inspiration for engineering electrocatalysts applied in water oxidation.
氧电催化对于电化学储能和转换技术具有重要意义,这些技术包括燃料电池、金属空气电池和水分解装置。用绝对有效且低成本的金属基氧电催化剂替代贵金属基电催化剂对于这些技术的商业应用至关重要。在此,提出了一种新颖的策略,通过使用牺牲性ZnO球形模板制备硒化和磷化的多孔钴镍氧化物微立方体,并将所得微立方体用作析氧反应(OER)电催化剂。硒化样品表现出理想且稳定的OER性能,在10 mA cm时具有与RuO(308 mV)相当的过电位(312 mV),并且在电流达到13.7 mA cm时具有更好的活性。磷化样品呈现核壳结构,非晶态磷化物内部为低结晶度氧化物,这确保了在相同过电位(在10 mA cm时)下比RuO具有更高的活性,但塔菲尔斜率更低。这种表面掺杂方法可能会为设计用于水氧化的电催化剂提供灵感。