[HTML][HTML] Metal–organic frameworks and their derivatives for optimizing lithium metal anodes

Z Wang, Z Du, Y Liu, CE Knapp, Y Dai, J Li, W Zhang… - eScience, 2024 - Elsevier
Lithium metal anodes (LMAs) have been considered the ultimate anode materials for next-
generation batteries. However, the uncontrollable lithium dendrite growth and huge volume …

Engineering current collectors for advanced alkali metal anodes: A review and perspective

L Hu, J Deng, Q Liang, J Wu, B Ge, Q Liu, G Chen… - …, 2023 - Wiley Online Library
Alkali metal batteries (AMBs) are promising next‐generation high‐density electrochemical
energy storage systems. In addition, current collectors play important roles in enhancing …

Present and future of functionalized Cu current collectors for stabilizing lithium metal anodes

L Yuhang, Y Li, J Sun, Z Du, X Hu, J Bi, C Liu… - Nano Research …, 2023 - dr.ntu.edu.sg
Li metal has been recognized as the most promising anode materials for next-generation
high-energy-density batteries, however, the inherent issues of dendrite growth and huge …

Towards practical lithium metal batteries with composite scaffolded lithium metal: an overview

S Xia, C Yang, Z Jiang, W Fan, T Yuan, Y Pang… - … Composites and Hybrid …, 2023 - Springer
The successful employment of lithium metal substituting for the conventional graphite anode
can promote a significant leap in the cell energy density for its ultrahigh theoretical specific …

Emerging two-dimensional covalent and coordination polymers for stable lithium metal batteries: from liquid to solid

J Wang, K Wang, Y Xu - ACS nano, 2021 - ACS Publications
Lithium metal anodes (LMAs) have attracted much attention in recent years because of their
high theoretical capacity (3860 mAh g–1) and low electrochemical potential (− 3.040 V vs …

Advances in functional organic material-based interfacial engineering on metal anodes for rechargeable secondary batteries

R Shi, Z Shen, Q Yue, Y Zhao - Nanoscale, 2023 - pubs.rsc.org
Metal anodes with the merits of high theoretical capacity and low electrochemical potential
are promising candidates for the construction of high-energy-density rechargeable …

Progress of carbon and Metal-Based Three-Dimensional materials for Dendrite-Proof and Interface-Compatible lithium metal anode

Y Sun, W Zhao, X Wang, M Gao, X Yang, K Zhang… - Applied Surface …, 2022 - Elsevier
Accompanied with ever-increasing demand of high energy storage devices, lithium metal
batteries (LMBs) have received wide interest due to the extraordinarily high theoretical …

A review on copper current collector used for lithium metal batteries: Challenges and strategies

J Qiu, R Qiu, Z Mao, Y Han, P Madhusudan… - Journal of Energy …, 2024 - Elsevier
Lithium (Li) metal anodes have become research hotspots due to their high theoretical
specific capacity (3860 mAhg− 1) and lowest REDOX potential (− 3.04 V, based on the …

Regulating lithium deposition behavior by electrokinetic effects in a high-zeta-potential h-BN/zinc-lithium alloy for high-performance lithium metal anodes

S Liu, J Zhao, F Li, Y Zhao, G Li - Journal of Materials Chemistry A, 2022 - pubs.rsc.org
The commercial application of lithium metal anodes is impeded by the uncontrollable growth
of lithium dendrites and the serious volume change during the cycling process. Here we …

Fabrication of robust mechanical NiCo nanocubes for lithium metal anode with superior high rate performance

YH Song, YF Li, J Lin, GD Yang, XL Wu… - Chemical Engineering …, 2024 - Elsevier
The incorporation of a conductive three-dimensional (3D) scaffold in lithium metal anodes
(LMAs) represents one of the most effective strategies for mitigating the uncontrolled …