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Defect engineering of two-dimensional materials for advanced energy conversion and storage
In the global trend towards carbon neutrality, sustainable energy conversion and storage
technologies are of vital significance to tackle the energy crisis and climate change …
technologies are of vital significance to tackle the energy crisis and climate change …
Do** regulation in transition metal compounds for electrocatalysis
In electrocatalysis, do** regulation has been considered as an effective method to
modulate the active sites of catalysts, providing a powerful means for creating a large variety …
modulate the active sites of catalysts, providing a powerful means for creating a large variety …
Hierarchical Spatial Confinement Unlocking the Storage Limit of MoS2 for Flexible High-Energy Supercapacitors
L Kang, S Liu, Q Zhang, J Zou, J Ai, D Qiao, W Zhong… - ACS …, 2024 - ACS Publications
Molybdenum sulfide (MoS2) is a promising electrode material for supercapacitors; however,
its limited Mo/S edge sites and intrinsic inert basal plane give rise to sluggish active …
its limited Mo/S edge sites and intrinsic inert basal plane give rise to sluggish active …
Electronic structural engineering of transition metal-based electrocatalysts for the hydrogen evolution reaction
The hydrogen evolution reaction (HER) in water splitting is vital to the production of high-
purity hydrogen from sustainable energy sources in order to combat climate change and …
purity hydrogen from sustainable energy sources in order to combat climate change and …
Iridium metallene oxide for acidic oxygen evolution catalysis
Exploring new materials is essential in the field of material science. Especially, searching for
optimal materials with utmost atomic utilization, ideal activities and desirable stability for …
optimal materials with utmost atomic utilization, ideal activities and desirable stability for …
Layer-structured anisotropic metal chalcogenides: recent advances in synthesis, modulation, and applications
The unique electronic and catalytic properties emerging from low symmetry anisotropic (1D
and 2D) metal chalcogenides (MCs) have generated tremendous interest for use in next …
and 2D) metal chalcogenides (MCs) have generated tremendous interest for use in next …
Recent developments in 2D transition metal dichalcogenides: phase transition and applications of the (quasi-) metallic phases
The advent of two-dimensional transition metal dichalcogenides (2D-TMDs) has led to an
extensive amount of interest amongst scientists and engineers alike and an intensive …
extensive amount of interest amongst scientists and engineers alike and an intensive …
Perfecting electrocatalysts via imperfections: towards the large-scale deployment of water electrolysis technology
As a potential energy carrier, hydrogen has surged up the priority list as part of broader
decarbonization efforts and strategies to build or acquire clean energy economies. Driven by …
decarbonization efforts and strategies to build or acquire clean energy economies. Driven by …
Strain and surface engineering of multicomponent metallic nanomaterials with unconventional phases
Q Yao, Z Yu, L Li, X Huang - Chemical Reviews, 2023 - ACS Publications
Multicomponent metallic nanomaterials with unconventional phases show great prospects in
electrochemical energy storage and conversion, owing to unique crystal structures and …
electrochemical energy storage and conversion, owing to unique crystal structures and …
2D metallic transition‐metal dichalcogenides: structures, synthesis, properties, and applications
Abstract 2D materials and the associated heterostructures define an ideal material platform
for investigating physical and chemical properties, and exhibiting new functional …
for investigating physical and chemical properties, and exhibiting new functional …