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Electrocatalytic water splitting: Mechanism and electrocatalyst design
Hydrogen energy, a new type of clean and efficient energy, has assumed precedence in
decarbonizing and building a sustainable carbon-neutral economy. Recently, hydrogen …
decarbonizing and building a sustainable carbon-neutral economy. Recently, hydrogen …
Progress in metal-organic-framework-based single-atom catalysts for environmental remediation
W Qu, C Chen, Z Tang, H Wen, L Hu, D ** efficient and economical electrocatalysts for acidic oxygen evolution reaction
(OER) is essential for proton exchange membrane water electrolyzers (PEMWE). Cobalt …
(OER) is essential for proton exchange membrane water electrolyzers (PEMWE). Cobalt …
Stabilizing Lattice Oxygen through Mn Do** in NiCo2O4‐δ Spinel Electrocatalysts for Efficient and Durable Acid Oxygen Evolution
H Zhao, L Zhu, J Yin, J **, X Du, L Tan… - Angewandte Chemie …, 2024 - Wiley Online Library
Abstract Design the electrocatalysts without noble metal is still a challenge for oxygen
evolution reaction (OER) in acid media. Herein, we reported the manganese (Mn) do** …
evolution reaction (OER) in acid media. Herein, we reported the manganese (Mn) do** …
Self-supported N-doped hierarchical Co3O4 electrocatalyst with abundant oxygen vacancies for acidic water oxidation
X Yang, J Cheng, H Li, Y Xu, W Tu, J Zhou - Chemical Engineering Journal, 2023 - Elsevier
The development of low-cost, efficient and robust non-precious metal electrocatalysts for
acidic oxygen evolution (OER) is a major challenge. A novel self-supported N-doped …
acidic oxygen evolution (OER) is a major challenge. A novel self-supported N-doped …
Asymmetric Coordination of Iridium Single‐atom IrN3O Boosting Formic Acid Oxidation Catalysis
L Wang, B Ji, Y Zheng, Y Tang - … Chemie International Edition, 2023 - Wiley Online Library
Rational design of the proximal coordination of an active site to achieve its optimum catalytic
activity is the ultimate goal in single‐atom catalysis, but still challenging. Here, we report …
activity is the ultimate goal in single‐atom catalysis, but still challenging. Here, we report …