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Regulating the electronic structure of manganese-based materials to optimize the performance of zinc-ion batteries
A Zhang, R Zhao, Y Wang, JJ Yang, C Wu… - Energy & Environmental …, 2023 - pubs.rsc.org
Manganese-based materials are considered as one of the most promising energy storage
cathode materials for zinc-ion batteries (ZIBs). In order to achieve major breakthroughs in …
cathode materials for zinc-ion batteries (ZIBs). In order to achieve major breakthroughs in …
Single-atom catalysts across the periodic table
Isolated atoms featuring unique reactivity are at the heart of enzymatic and homogeneous
catalysts. In contrast, although the concept has long existed, single-atom heterogeneous …
catalysts. In contrast, although the concept has long existed, single-atom heterogeneous …
Magnesium Ion Do** and Micro‐Structural Engineering Assist NH4V4O10 as a High‐Performance Aqueous Zinc Ion Battery Cathode
X Wang, Y Wang, A Naveed, G Li… - Advanced Functional …, 2023 - Wiley Online Library
Layered ammonium vanadate materials exhibit significant mass‐specific capacity and ion
transport rate due to their small molecular weight and large ionic radius. However, the strong …
transport rate due to their small molecular weight and large ionic radius. However, the strong …
Fast-charging aluminium–chalcogen batteries resistant to dendritic shorting
Although batteries fitted with a metal negative electrode are attractive for their higher energy
density and lower complexity, the latter making them more easily recyclable, the threat of cell …
density and lower complexity, the latter making them more easily recyclable, the threat of cell …
Defect engineering on V2O3 cathode for long-cycling aqueous zinc metal batteries
Defect engineering is a strategy that is attracting widespread attention for the possibility of
modifying battery active materials in order to improve the cycling stability of the electrodes …
modifying battery active materials in order to improve the cycling stability of the electrodes …
Recent progress in the design of advanced MXene/metal oxides-hybrid materials for energy storage devices
The family of two-dimensional (2D) transition metal carbides, nitrides, and carbonitride, also
called MXenes, have emerged as an attractive platform for constructing functional materials …
called MXenes, have emerged as an attractive platform for constructing functional materials …
Cathode materials and chemistries for magnesium batteries: challenges and opportunities
Rechargeable magnesium batteries hold promise for providing high energy density, material
sustainability, and safety features, attracting increasing research interest as post‐lithium …
sustainability, and safety features, attracting increasing research interest as post‐lithium …
Manipulating the ion-transfer kinetics and interface stability for high-performance zinc metal anodes
The zinc metal is recognized as one of the most promising anodes for Zn-based batteries in
an energy-storage system. However, the deposition and transfer of bivalent Zn2+ into the …
an energy-storage system. However, the deposition and transfer of bivalent Zn2+ into the …
Defect engineering on electrode materials for rechargeable batteries
Y Zhang, L Tao, C **e, D Wang, Y Zou… - Advanced …, 2020 - Wiley Online Library
The reasonable design of electrode materials for rechargeable batteries plays an important
role in promoting the development of renewable energy technology. With the in‐depth …
role in promoting the development of renewable energy technology. With the in‐depth …
Recent advances on challenges and strategies of manganese dioxide cathodes for aqueous zinc‐ion batteries
Y Xu, G Zhang, J Liu, J Zhang, X Wang… - Energy & …, 2023 - Wiley Online Library
Aqueous zinc‐ion batteries (AZIBs) are regarded as promising electrochemical energy
storage devices owing to its low cost, intrinsic safety, abundant zinc reserves, and ideal …
storage devices owing to its low cost, intrinsic safety, abundant zinc reserves, and ideal …