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Recent progress on phase engineering of nanomaterials
As a key structural parameter, phase depicts the arrangement of atoms in materials.
Normally, a nanomaterial exists in its thermodynamically stable crystal phase. With the …
Normally, a nanomaterial exists in its thermodynamically stable crystal phase. With the …
Descriptors for the evaluation of electrocatalytic reactions: d‐band theory and beyond
Abstract Closing the carbon‐, hydrogen‐, and nitrogen cycle with renewable electricity holds
promises for the mitigation of the facing environment and energy crisis, along with the …
promises for the mitigation of the facing environment and energy crisis, along with the …
Perovskite enables high performance vanadium redox flow battery
Perovskites have been attractive materials in electrocatalysis due to their virtues of low cost,
variety, and tuned activity. Herein, we firstly demonstrate superior electrochemical kinetics of …
variety, and tuned activity. Herein, we firstly demonstrate superior electrochemical kinetics of …
Maneuverable B-site cation in perovskite tuning anode reaction kinetics in vanadium redox flow batteries
The actual performance of vanadium redox flow batteries (VRFBs) is still significantly
constrained by the slow kinetics and major parasitic reactivity of anode issues. Herein, a B …
constrained by the slow kinetics and major parasitic reactivity of anode issues. Herein, a B …
[HTML][HTML] Recent development of perovskite oxide-based electrocatalysts and their applications in low to intermediate temperature electrochemical devices
As a consequence of the depletion of fossil fuels and an increasing population, the global
energy crisis has driven researchers to explore innovative energy storage and conversion …
energy crisis has driven researchers to explore innovative energy storage and conversion …
Strategic design and insights into lanthanum and strontium perovskite oxides for oxygen reduction and oxygen evolution reactions
Perovskite oxides exhibit bifunctional activity for both oxygen reduction (ORR) and oxygen
evolution reactions (OER), making them prime candidates for energy conversion in …
evolution reactions (OER), making them prime candidates for energy conversion in …
Mn‐Based mullites for environmental and energy applications
Mn‐based mullite oxides AMn2O5 (A= lanthanide, Y, Bi) is a novel type of ternary catalyst in
terms of their electronic and geometric structures. The coexistence of pyramid Mn3+–O and …
terms of their electronic and geometric structures. The coexistence of pyramid Mn3+–O and …
Operando identification of the oxide path mechanism with different dual-active sites for acidic water oxidation
Q Ji, B Tang, X Zhang, C Wang, H Tan, J Zhao… - Nature …, 2024 - nature.com
The microscopic reaction pathway plays a crucial role in determining the electrochemical
performance. However, artificially manipulating the reaction pathway still faces considerable …
performance. However, artificially manipulating the reaction pathway still faces considerable …
Epitaxially Grown Heterostructured SrMn3O6−x‐SrMnO3 with High‐Valence Mn3+/4+ for Improved Oxygen Reduction Catalysis
Heterostructured catalysts show outstanding performance in electrochemical reactions
owing to their beneficial interfacial properties. However, the rational design of …
owing to their beneficial interfacial properties. However, the rational design of …
Extremely Active and Robust Ir− Mn Dual‐Atom Electrocatalyst for Oxygen Evolution Reaction by Oxygen‐Oxygen Radical Coupling Mechanism
A novel Ir− Mn dual‐atom electrocatalyst is synthesized by a facile ion‐exchange method by
incorporating Ir in SrMnO3, which yields an extremely high activity and stability for the …
incorporating Ir in SrMnO3, which yields an extremely high activity and stability for the …