Kc Binod Raj, Munkaila Samira, Bastakoti Bishnu Prasad
Department of Chemistry, North Carolina Agricultural and Technical State University, 1601 E. Market St, Greensboro, NC, 27411, USA.
ChemistryOpen. 2025 Sep;14(9):e202500115. doi: 10.1002/open.202500115. Epub 2025 Jun 5.
A composite electrocatalyst CeO/CuO is fabricated for the hydrogen evolution reaction (HER) via a simple, facile, one-step hydrothermal method, using F-127 as a template and structure directing agent. The prepared composite CeO/CuO shows top-notch HER activities with a small overpotential of 98 mV at 10 mA cm and just 160 mV overpotential to attain a current density of 50 mA cm with good stability for 20 h in an acidic medium. The enhanced catalytic activities of CeO/CuO nanocomposite are attributed to their synergetic interface interaction, which lead to improved conductivity, reactive sites, and oxygen vacancies in their lattices. This study aims to advance the development of earth-abundant transition metal oxides-based electrocatalysts as economical, durable, and efficient HER electrocatalysts to replace noble metal-based materials in the future.
采用简单、便捷的一步水热法,以F-127为模板和结构导向剂,制备了用于析氢反应(HER)的复合电催化剂CeO/CuO。所制备的复合CeO/CuO在酸性介质中表现出一流的析氢活性,在10 mA cm时过电位仅为98 mV,在电流密度达到50 mA cm时过电位仅为160 mV,且在20 h内具有良好的稳定性。CeO/CuO纳米复合材料催化活性的增强归因于其协同界面相互作用,这导致其晶格中的电导率、活性位点和氧空位得到改善。本研究旨在推动基于储量丰富的过渡金属氧化物的电催化剂的发展,使其成为经济、耐用且高效的析氢电催化剂,以便在未来取代贵金属基材料。