Dynamic Li+ Capture through Ligand‐Chain Interaction for the Regeneration of Depleted LiFePO4 Cathode

XX Zhao, XT Wang, JZ Guo, ZY Gu, JM Cao… - Advanced …, 2024 - Wiley Online Library
After application in electric vehicles, spent LiFePO4 (LFP) batteries are typically
decommissioned. Traditional recycling methods face economic and environmental …

Advances in Electrochemical Liquid-Phase Transmission Electron Microscopy for Visualizing Rechargeable Battery Reactions

H Hu, R Yang, Z Zeng - ACS nano, 2024 - ACS Publications
This review presents an overview of the application of electrochemical liquid-phase
transmission electron microscopy (ELP-TEM) in visualizing rechargeable battery reactions …

In Situ/Operando Imaging Techniques for Next-Generation Battery Analysis

BK Cho, SY Jung, SJ Park, JH Hyun, SH Yu - ACS Energy Letters, 2024 - ACS Publications
The usage of a secondary battery system as a medium for utilizing environmentally friendly
renewable energy is experiencing rapid growth. However, as the demand for alternatives to …

Computational Insights into Electrolyte-Dependent Li-Ion Charge-Transfer Kinetics at the LixCoO2 Interface

J Halldin Stenlid, P Žguns, D Vivona… - ACS Energy …, 2024 - ACS Publications
Interface engineering remains a largely underexplored area, and yet it holds the keys to high-
performance Li-ion batteries. It is the charge transfer across electrode–electrolyte interfaces …

Revealing the voltage decay of LiMn0. 7Fe0. 3PO4 cathodes over cycling

Q Hu, L Wang, G Han, J Liao, J Liu, J Yao, X He - Nano Energy, 2024 - Elsevier
Mn-rich olivine phosphates (LiMn x Fe 1− x PO 4, x> 0.6) are promising cathode candidates
for Li-ion batteries (LIBs) with high energy density and low cost. However, it suffers voltage …

A locally solvent-tethered polymer electrolyte for long-life lithium metal batteries

Y Zhu, Z Lao, M Zhang, T Hou, X Xiao, Z Piao… - Nature …, 2024 - nature.com
Solid polymer electrolytes exhibit enhanced Li+ conductivity when plasticized with highly
dielectric solvents such as N, N-dimethylformamide (DMF). However, the application of DMF …

Autocatalytic solid-state electrochemical reactions: a non-linear kinetic theory of batteries

K Malaie - Physical Chemistry Chemical Physics, 2023 - pubs.rsc.org
Autocatalysis is a nonlinear dynamic phenomenon that is believed to be involved in many
natural phenomena. Herein, a mesoscopic kinetic model of solid-state electrochemical …

Spatiotemporal active phase evolution for CO2 electrocatalysis

J Kim, SY Lee, SJ Kim, B Koo, J Chung, D Lee, S Choi… - Joule, 2024 - cell.com
Revealing and redirecting the dynamic evolution of active species in efficient
electrochemical CO 2 reduction (ECR) catalysts is challenging. By observing the chemical …

Understanding Ultrafast Rechargeable Al/graphite Battery by Visualizing Phase Separation

W Luo, N Hao, S Gu, H Wang, F Zhang, C Zeng… - Energy Storage …, 2024 - Elsevier
Al/graphite batteries (ABs) using ionic liquid electrolytes exhibit exceptionally fast charging
and cycling stability. However, the mechanisms underlying their high rate capabilities …

Coherent Phase Change in Interstitial Solutions: A Hierarchy of Instabilities

J Weissmüller - Advanced Science, 2024 - Wiley Online Library
Metal hydrides or lithium ion battery electrodes can take the form of interstitial solid solutions
with a miscibility gap. This work discusses theory approaches for locating, in temperature …