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A Co-Doped Nanorod-like RuO2 Electrocatalyst with Abundant Oxygen Vacancies for Acidic Water Oxidation

机译:酸性水氧化富氧空位的共掺杂纳米棒状RuO2电催化剂

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摘要

Active and highly stable electrocatalysts for oxygen evolution reaction (OER) in acidic media are currently in high demand as a cleaner alternative to the combustion of fossil fuels. Herein, we report a Co-doped nanorod-like RuO electrocatalyst with an abundance of oxygen vacancies achieved through the facile, one-step annealing of a Ru-exchanged ZIF-67 derivative. The compound exhibits ultra-high OER performance in acidic media, with a low overpotential of 169 mV at 10 mA cm while maintaining excellent activity, even when exposed to a 50-h galvanostatic stability test at a constant current of 10 mA cm . The dramatic enhancement in OER performance is mainly attributed to the abundance of oxygen vacancies and modulated electronic structure of the Co-doped RuO that rely on a vacancy-related lattice oxygen oxidation mechanism (LOM) rather than adsorbate evolution reaction mechanism (AEM), as revealed and supported by experimental characterizations as well as density functional theory (DFT) calculations.
机译:对于酸性介质中氧释放反应(OER)的活性和高度稳定的电催化剂,目前作为化石燃料燃烧的清洁替代品的需求量很大。本文中,我们报道了一种通过Co掺杂的纳米棒状RuO电催化剂,该催化剂通过Ru交换的ZIF-67衍生物的便捷,一步退火实现了大量的氧空位。该化合物在酸性介质中显示出超高的OER性能,即使在10 mA cm的恒定电流下进行50小时恒电流稳定性测试时,在10 mA cm时仍具有169mV的低过电势,同时保持了出色的活性。 OER性能的显着提高主要归因于依赖于与空位相关的晶格氧氧化机制(LOM)而不是吸附物析出反应机理(AEM)的大量Co掺杂RuO的氧空位和调制的电子结构。通过实验表征以及密度泛函理论(DFT)计算得到揭示和支持。

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