Battiato Sergio, Sekkat Abderrahime, Velasquez Camilo Sanchez, Pellegrino Anna Lucia, Bellet Daniel, Terrasi Antonio, Mirabella Salvo, Muñoz-Rojas David
Dipartimento di Fisica e Astronomia "Ettore Majorana", Università di Catania Via Santa Sofia 64 95123 Catania Italy.
CNR-IMM Via Santa Sofia 64 95123 Catania Italy.
Nanoscale Adv. 2024 Jul 15;6(17):4426-4433. doi: 10.1039/d4na00364k. eCollection 2024 Aug 20.
The development of highly active, low-cost, and robust electrocatalysts for the oxygen evolution reaction (OER) is a crucial endeavor for the clean and economically viable production of hydrogen electrochemical water splitting. Herein, cuprous oxide (CuO) thin films are deposited on silver nanowire (AgNW) networks by atmospheric-pressure spatial atomic layer deposition (AP-SALD). AgNW@CuO nanocomposites supported on conductive copper electrodes exhibited superior OER activity as compared to bare copper substrate and bare AgNWs. Moreover, a relationship between CuO thickness and OER activity was established. Notably, the most effective catalyst (AgNW@50nm-thick CuO) demonstrated very high OER activity with a low overpotential of 409 mV to deliver a current density of 10 mA cm ( ), a Tafel slope of 47 mV dec, a turnover frequency (TOF) of 4.2 s at 350 mV, and good durability in alkaline media (1 M KOH). This highlights the potential of AgNWs as a powerful platform for the formation of highly efficient copper oxide catalysts towards OER. This work provides a foundation for the development of nanostructured Cu-based electrocatalysts for future clean energy conversion and storage systems.
开发用于析氧反应(OER)的高活性、低成本且稳健的电催化剂,对于通过电化学水分解实现清洁且经济可行的制氢至关重要。在此,通过大气压空间原子层沉积(AP-SALD)将氧化亚铜(CuO)薄膜沉积在银纳米线(AgNW)网络上。与裸铜基板和裸AgNW相比,负载在导电铜电极上的AgNW@CuO纳米复合材料表现出优异的OER活性。此外,还建立了CuO厚度与OER活性之间的关系。值得注意的是,最有效的催化剂(AgNW@50nm厚的CuO)表现出非常高的OER活性,在电流密度为10 mA cm时过电位低至409 mV,塔菲尔斜率为47 mV dec,在350 mV时周转频率(TOF)为4.2 s,并且在碱性介质(1 M KOH)中具有良好的耐久性。这突出了AgNW作为形成高效氧化铜OER催化剂的强大平台的潜力。这项工作为未来清洁能源转换和存储系统中纳米结构铜基电催化剂的开发奠定了基础。