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Recent advances in interface engineering strategy for highly‐efficient electrocatalytic water splitting
The hydrogen energy generated by the electrocatalytic water splitting reaction has been
established as a renewable and clean energy carrier with ultra‐high energy density, which …
established as a renewable and clean energy carrier with ultra‐high energy density, which …
Borophene: two-dimensional boron monolayer: synthesis, properties, and potential applications
Borophene, a monolayer of boron, has risen as a new exciting two-dimensional (2D)
material having extraordinary properties, including anisotropic metallic behavior and flexible …
material having extraordinary properties, including anisotropic metallic behavior and flexible …
Multisite synergism‐induced electron regulation of high‐entropy alloy metallene for boosting alkaline hydrogen evolution reaction
Designing the high‐entropy alloys (HEAs) electrocatalysts with controllable nanostructures
is of great significance for the development of efficient alkaline hydrogen evolution reaction …
is of great significance for the development of efficient alkaline hydrogen evolution reaction …
Advanced bifunctional catalysts for energy production by electrolysis of earth-abundant water
Hydrogen production employing non-carbon materials has tremendous promise toward the
sustainable Future. Conventional technology relies on water splitting (WS) for hydrogen …
sustainable Future. Conventional technology relies on water splitting (WS) for hydrogen …
Nanoporous ultra-high-entropy alloys containing fourteen elements for water splitting electrocatalysis
High-entropy alloys (HEAs) are near-equimolar alloys comprising five or more elements. In
recent years, catalysis using HEAs has attracted considerable attention across various …
recent years, catalysis using HEAs has attracted considerable attention across various …
Regulating the spin polarization of NiFe layered double hydroxide for the enhanced oxygen evolution reaction
W Cao, XH Gao, J Wu, AQ Huang, H Hu… - ACS Catalysis, 2024 - ACS Publications
The oxygen evolution reaction (OER) is an electrochemical process that involves the spin-
dependent conversion of singlet OH–/H2O to triplet O2. However, the sluggish dynamics …
dependent conversion of singlet OH–/H2O to triplet O2. However, the sluggish dynamics …
Unraveling the synergy of anion modulation on Co electrocatalysts by pulsed laser for water splitting: intermediate capturing by in situ/operando Raman studies
Herein, the authors produce Co‐based (Co3 (PO4) 2, Co3O4, and Co9S8) electrocatalysts
via pulsed laser ablation in liquid (PLAL) to explore the synergy of anion modulation on …
via pulsed laser ablation in liquid (PLAL) to explore the synergy of anion modulation on …
Porous Mn-doped cobalt phosphide nanosheets as highly active electrocatalysts for oxygen evolution reaction
Transition metal phosphides (TMP) show great potential to alternative noble metal based
electrocatalysts for oxygen evolution reaction (OER) electrolysis but the still unsatisfactory …
electrocatalysts for oxygen evolution reaction (OER) electrolysis but the still unsatisfactory …
Spherical nickel doped cobalt phosphide as an anode catalyst for oxygen evolution reaction in alkaline media: From catalysis to system
Anion exchange membrane water electrolysis (AEMWE) uses a zero-gap membrane-
electrode-assembly (MEA) consisting of a polymer electrolyte membrane and non-precious …
electrode-assembly (MEA) consisting of a polymer electrolyte membrane and non-precious …
On the operando structure of ruthenium oxides during the oxygen evolution reaction in acidic media
In the search for rational design strategies for oxygen evolution reaction (OER) catalysts,
linking the catalyst structure to activity and stability is key. However, highly active catalysts …
linking the catalyst structure to activity and stability is key. However, highly active catalysts …