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3D Host Design Strategies Guiding “Bottom–Up” Lithium Deposition: A Review
Lithium metal batteries (LMBs) have the potential to be the next‐generation rechargeable
batteries due to the high theoretical specific capacity and the lowest redox potential of …
batteries due to the high theoretical specific capacity and the lowest redox potential of …
A 3D Hierarchical Host with Gradient‐Distributed Dielectric Properties toward Dendrite‐free Lithium Metal Anode
Y Zhang, M Yao, T Wang, H Wu… - Angewandte Chemie …, 2024 - Wiley Online Library
The conventional conductive three‐dimensional (3D) host fails to effectively stabilize lithium
metal anodes (LMAs) due to the internal incongruity arising from nonuniform lithium‐ion …
metal anodes (LMAs) due to the internal incongruity arising from nonuniform lithium‐ion …
A 110 Wh kg− 1 Ah-level anode-free sodium battery at− 40° C
Q Zhu, D Yu, J Chen, L Cheng, M Tang, Y Wang, Y Li… - Joule, 2024 - cell.com
High-energy cryogenic batteries have been pursued throughout the past decades. Anode-
free batteries offer a promising avenue to boost energy density because they comprise …
free batteries offer a promising avenue to boost energy density because they comprise …
An Ultrafast and Stable Li‐Metal Battery Cycled at− 40° C
L Cheng, Y Wang, J Yang, M Tang… - Advanced Functional …, 2023 - Wiley Online Library
Li‐metal battery (LMB) suffers from the unexpected Li dendrite growth and unstable solid‐
electrolyte interphase (SEI), especially in the extreme conditions, such as high rates and low …
electrolyte interphase (SEI), especially in the extreme conditions, such as high rates and low …
A fluorinated‐polyimide‐based composite nanofibrous separator with homogenized pore size for wide‐temperature lithium metal batteries
Y Qian, K Chen, Z Feng, Y Ouyang, Q Lan… - Small …, 2023 - Wiley Online Library
Lithium (Li) is known for excellent theoretical specific capacity and most negative
electrochemical potential, while still restricted by the irregular lithium dendrites and safety …
electrochemical potential, while still restricted by the irregular lithium dendrites and safety …
Liberating the electrolyte via in situ conversion of an amide, sulfonate‐containing monomer precursor for high‐temperature graphite/NCM batteries
High‐temperature (HT) operation and storage performance of Li‐ion batteries (LIBs) are
essential for applications in electric vehicles, grid storage, or defense missions …
essential for applications in electric vehicles, grid storage, or defense missions …
Gradient host for bottom-up deposition of lithium metal anode
Lithium metal batteries have been attracting an abundance of attention recently as a
powerful competitor of the next-generation advanced energy storage technologies …
powerful competitor of the next-generation advanced energy storage technologies …
3D lithiophilic collector coated by amorphous g-C3N4 enabling Ultra-Stable cycling Li metal batteries
L Gao, C Sun, X Li, Y An, J Li, Y Bai, X Bian - Chemical Engineering …, 2024 - Elsevier
Lithium metal batteries (LMB) are thought of the most promising candidates for the next
generation of high energy density batteries, but the problems of interface instability and …
generation of high energy density batteries, but the problems of interface instability and …
Facile Lithium Densification Kinetics by Hyperporous/Hybrid Conductor for High‐Energy‐Density Lithium Metal Batteries
Lithium metal anode (LMA) emerges as a promising candidate for lithium (Li)‐based battery
chemistries with high‐energy‐density. However, inhomogeneous charge distribution from …
chemistries with high‐energy‐density. However, inhomogeneous charge distribution from …
Enhancing Lithium‐Mediated Nitrogen Reduction with Porous Polymer Fibers Featuring Lithium‐Ion Affinity
The interaction between the electrolyte and working electrode surface affects the cascade of
reactions involving Li deposition, N2, and proton carriers and consequently the NH3 …
reactions involving Li deposition, N2, and proton carriers and consequently the NH3 …