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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 …
Recent Advances in Rechargeable Metal–CO2 Batteries with Nonaqueous Electrolytes
A Sarkar, VR Dharmaraj, CH Yi, K Iputera… - Chemical …, 2023 - ACS Publications
This review article discusses the recent advances in rechargeable metal–CO2 batteries
(MCBs), which include the Li, Na, K, Mg, and Al-based rechargeable CO2 batteries, mainly …
(MCBs), which include the Li, Na, K, Mg, and Al-based rechargeable CO2 batteries, mainly …
Anode-electrolyte interfaces in secondary magnesium batteries
Secondary magnesium batteries are still in the research stage, after the first prototype of a
magnesium-based battery was demonstrated almost two decades ago. Since this …
magnesium-based battery was demonstrated almost two decades ago. Since this …
Organic electrolyte design for rechargeable batteries: from lithium to magnesium
H Zhang, L Qiao, M Armand - … Chemie International Edition, 2022 - Wiley Online Library
Rechargeable magnesium batteries (RMBs) have been considered as one of the most
viable battery chemistries amongst the “post” lithium‐ion battery (LIB) technologies owing to …
viable battery chemistries amongst the “post” lithium‐ion battery (LIB) technologies owing to …
Understanding the cathode‐electrolyte interfacial chemistry in rechargeable magnesium batteries
H Shi, G Wang, Z Wang, L Yang, S Zhang… - Advanced …, 2024 - Wiley Online Library
Rechargeable magnesium batteries (RMBs) have garnered significant attention due to their
potential to provide high energy density, utilize earth‐abundant raw materials, and employ …
potential to provide high energy density, utilize earth‐abundant raw materials, and employ …
Multi‐electron reactions enabled by anion‐based redox chemistry for high‐energy multivalent rechargeable batteries
The development of multivalent metal (such as Mg and Ca) based battery systems is
hindered by lack of suitable cathode chemistry that shows reversible multi‐electron redox …
hindered by lack of suitable cathode chemistry that shows reversible multi‐electron redox …
Strategies to enable reversible magnesium electrochemistry: from electrolytes to artificial solid–electrolyte interphases
Z Liang, C Ban - Angewandte Chemie International Edition, 2021 - Wiley Online Library
The first prototype of a rechargeable magnesium (Mg) battery demonstrated two decades
ago sparked tremendous interest in the electrochemical community due to their potential low …
ago sparked tremendous interest in the electrochemical community due to their potential low …
Using a chloride-free magnesium battery electrolyte to form a robust anode–electrolyte nanointerface
Magnesium bis (hexamethyldisilazide)(Mg (HMDS) 2)-based electrolytes are compelling
candidates for rechargeable magnesium batteries due to their high compatibility with …
candidates for rechargeable magnesium batteries due to their high compatibility with …
Electrolyte and interphase design for magnesium anode: major challenges and perspectives
The rechargeable magnesium battery (RMB) is regarded as a high‐energy, safe, and cost‐
effective alternative for conventional batteries. Unfortunately, the passivation and uneven Mg …
effective alternative for conventional batteries. Unfortunately, the passivation and uneven Mg …
Boosted Mg−CO2 Batteries by Amine‐Mediated CO2 Capture Chemistry and Mg2+‐Conducting Solid‐electrolyte Interphases
C Peng, L Xue, Z Zhao, L Guo, C Zhang… - Angewandte …, 2024 - Wiley Online Library
Mg− CO2 battery has been considered as an ideal system for energy conversion and CO2
fixation. However, its practical application is significantly limited by the poor reversibility and …
fixation. However, its practical application is significantly limited by the poor reversibility and …