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The role of high‐entropy materials in lithium‐based rechargeable batteries
The low energy density, safety concerns, and high cost associated with conventional lithium‐
ion batteries pose challenges in meeting the growing demands of emerging applications …
ion batteries pose challenges in meeting the growing demands of emerging applications …
Functional materials for aqueous redox flow batteries: merits and applications
F Zhu, W Guo, Y Fu - Chemical Society Reviews, 2023 - pubs.rsc.org
Redox flow batteries (RFBs) are promising electrochemical energy storage systems, offering
vast potential for large-scale applications. Their unique configuration allows energy and …
vast potential for large-scale applications. Their unique configuration allows energy and …
A Critical Review on Room‐Temperature Sodium‐Sulfur Batteries: From Research Advances to Practical Perspectives
Room‐temperature sodium‐sulfur (RT‐Na/S) batteries are promising alternatives for next‐
generation energy storage systems with high energy density and high power density …
generation energy storage systems with high energy density and high power density …
[HTML][HTML] Disordered materials for high-performance lithium-ion batteries: A review
Disordered materials (DMs) have become promising materials in the advancement of lithium-
ion batteries (LIBs). Their disordered, open structure is conductive to facilitate efficiency …
ion batteries (LIBs). Their disordered, open structure is conductive to facilitate efficiency …
Challenges and Prospects of All‐Solid‐State Electrodes for Solid‐State Lithium Batteries
S Dong, L Sheng, L Wang, J Liang… - Advanced Functional …, 2023 - Wiley Online Library
In the development of all‐solid‐state lithium batteries (ASSLB), progress is made with solid‐
state electrolytes; however, challenges regarding compatibility and stability still exist with …
state electrolytes; however, challenges regarding compatibility and stability still exist with …
Development of electrolytes under lean condition in lithium–sulfur batteries
Abstract Lithium–sulfur (Li–S) batteries stand out as one of the promising candidates for next‐
generation electrochemical energy storage technologies. A key requirement to realize high …
generation electrochemical energy storage technologies. A key requirement to realize high …
Molecular engineering toward robust solid electrolyte interphase for lithium metal batteries
Y Sun, J Li, S Xu, H Zhou, S Guo - Advanced Materials, 2024 - Wiley Online Library
Lithium‐metal batteries (LMBs) with high energy density are becoming increasingly
important in global sustainability initiatives. However, uncontrollable dendrite seeds …
important in global sustainability initiatives. However, uncontrollable dendrite seeds …
High‐Voltage Recyclable Organic Cathode Enabled by Heteroatomic Substitution for Aqueous Zinc‐Ion Batteries
D Du, J Zhou, Z Yin, G Feng, W Ji… - Advanced Energy …, 2024 - Wiley Online Library
N‐type organic compounds present themselves as promising high‐capacity cathodes for
aqueous Zn‐ion batteries. However, a common challenge is their working voltages often …
aqueous Zn‐ion batteries. However, a common challenge is their working voltages often …
Highly selective electrocatalytic olefin hydrogenation in aqueous solution
C **ng, Y Xue, X Zheng, Y Gao… - Angewandte Chemie …, 2023 - Wiley Online Library
Selective hydrogenation of olefins with water as the hydrogen source at ambient conditions
is still a big challenge in the field of catalysis. Herein, the electrocatalytic hydrogenation of …
is still a big challenge in the field of catalysis. Herein, the electrocatalytic hydrogenation of …
Decarboxylative sulfonylation of carboxylic acids under mild photomediated iron catalysis
Y Dong, N **ong, Z Rong, R Zeng - Organic Letters, 2024 - ACS Publications
Organic sulfones are an important class of chemical compounds widely used in many
research fields. The direct decarboxylative sulfonylation of carboxylic acids is attractive but …
research fields. The direct decarboxylative sulfonylation of carboxylic acids is attractive but …