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Recent development of oxygen evolution electrocatalysts in acidic environment
The proton exchange membrane (PEM) water electrolysis is one of the most promising
hydrogen production techniques. The oxygen evolution reaction (OER) occurring at the …
hydrogen production techniques. The oxygen evolution reaction (OER) occurring at the …
Elastic fibers/fabrics for wearables and bioelectronics
Y Zhang, J Zhou, Y Zhang, D Zhang… - Advanced …, 2022 - Wiley Online Library
Wearables and bioelectronics rely on breathable interface devices with bioaffinity,
biocompatibility, and smart functionality for interactions between beings and things and the …
biocompatibility, and smart functionality for interactions between beings and things and the …
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** …
Noble-metal-free metal oxides for catalyzing acidic oxygen and hydrogen evolution reactions: recent developments and future perspectives
Proton exchange membrane (PEM) water electrolysis has emerged as a highly promising
technology for sustainable hydrogen (H2) production, but its widespread application relies …
technology for sustainable hydrogen (H2) production, but its widespread application relies …
Recent progress of advanced Co3O4-based materials for electrocatalytic oxygen evolution reaction in acid: from rational screening to efficient design
C Wang, R Deng, M Guo, Q Zhang - International journal of hydrogen …, 2023 - Elsevier
Electrocatalytic water splitting is an efficient way to produce high-purity hydrogen. However,
the oxygen evolution reaction (OER) exhibits sluggish kinetics, severely hindering large …
the oxygen evolution reaction (OER) exhibits sluggish kinetics, severely hindering large …
Perspectives on the development of highly active, stable, and cost‐effective OER electrocatalysts in acid
H Yoon, B Ju, DW Kim - Battery Energy, 2023 - Wiley Online Library
Polymer electrolyte membrane water electrolysis (PEMWE) is an attractive hydrogen energy
production technology that offers various advantages such as compact design, high …
production technology that offers various advantages such as compact design, high …
Atomically dispersed Ru sites on MOF-derived NC-ZnO for efficient oxygen evolution reaction in acid media
Develo** acid-stable oxygen evolution/reduction reaction (OER/ORR) electrocatalysts is
essential for high-performance water splitting. Still, the slow kinetics of the ORR and OER …
essential for high-performance water splitting. Still, the slow kinetics of the ORR and OER …
Mixed- ligand-devised anionic MOF with divergent open Co (II)-nodes as chemo-resistant, bi-functional material for electrochemical water oxidation and mild …
Metal-organic frameworks (MOFs) combine unique merits of heterogeneous and molecular
catalysts, where purposeful implantation of task-specific functionalities along the pore …
catalysts, where purposeful implantation of task-specific functionalities along the pore …
[HTML][HTML] Anions-responsive supramolecular gels: A review
L Li, R Sun, R Zheng, Y Huang - Materials & Design, 2021 - Elsevier
Recently, supramolecular low-molecular-weight gels have attracted more and more
attentions and have potential applications in many areas due to the dynamic nature of …
attentions and have potential applications in many areas due to the dynamic nature of …
Metal–organic gels and their derived materials for electrochemical applications
S Ma, J Xu, S Sohrabi, J Zhang - Journal of Materials Chemistry A, 2023 - pubs.rsc.org
Metal–organic gels (MOGs) are an emerging class of materials and potential candidates for
electrochemical applications because they have the advantages of large surface areas …
electrochemical applications because they have the advantages of large surface areas …