Electrolyte Degradation During Aging Process of Lithium‐Ion Batteries: Mechanisms, Characterization, and Quantitative Analysis

Y Liao, H Zhang, Y Peng, Y Hu, J Liang… - Advanced Energy …, 2024 - Wiley Online Library
Given that the non‐aqueous electrolyte in Li‐ion battery plays a specific role as an ion‐
transport medium and interfacial modifier for both cathode and anode, understanding and …

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 …

Characterizing the critical challenges of Li-metal solid-state batteries: From micrometer to centimeter

SY Ham, A Cronk, YS Meng, J Jang - MRS Bulletin, 2023 - Springer
Lithium-metal solid-state batteries (LiMSSBs) are potentially one of the most promising next-
generation battery technologies that can enable high energy density without compromising …

[HTML][HTML] Differential voltage analysis for battery manufacturing process control

A Weng, JB Siegel, A Stefanopoulou - Frontiers in Energy Research, 2023 - frontiersin.org
Voltage-based battery metrics are ubiquitous and essential in battery manufacturing
diagnostics. They enable electrochemical “fingerprinting” of batteries at the end of the …

Understanding Interfaces at the Positive and Negative Electrodes on Sulfide-Based Solid-State Batteries

A Orue Mendizabal, M Cheddadi, A Tron… - ACS Applied Energy …, 2023 - ACS Publications
Despite the high ionic conductivity and attractive mechanical properties of sulfide-based
solid-state batteries, this chemistry still faces key challenges to encompass fast rate and long …

Microstructural Insights into Performance Loss of High‐Voltage Spinel Cathodes for Lithium‐ion Batteries

P Zuo, P Badami, SE Trask, DP Abraham, C Wang - Small, 2024 - Wiley Online Library
Abstract Spinel‐structured LiNixMn2− xO4 (LNMO), with low‐cost earth‐abundant
constituents, is a promising high‐voltage cathode material for lithium‐ion batteries. Even …

Lithium loss, resistance growth, electrode expansion, gas evolution, and Li plating: Analyzing performance and failure of commercial large-format NMC-Gr lithium-ion …

P Gasper, N Sunderlin, N Dunlap, P Walker… - Journal of Power …, 2024 - Elsevier
Abstract Analysis of the performance evolution and failure mechanisms of commercial Li-ion
batteries is crucial for improving testing methods, accurately modeling battery performance …

[HTML][HTML] Modeling of local electrode stresses and pressures in lithium-ion battery packs using three-dimensional homogenization

P Gupta, P Gudmundson - Journal of Power Sources, 2023 - Elsevier
Battery packs in electric vehicles consist of several battery modules, each containing several
battery cells with numerous layers (electrodes, separators and current collector layers. A …

Elucidating the role of cathode identity: Voltage-dependent reversibility of anode-free batteries

Y Kwon, A Svirinovsky-Arbeli, JC Hestenes, PJB Botero… - Chem, 2024 - cell.com
The cathode material in a lithium (Li) battery determines the system cost, energy density,
and thermal stability. In anode-free batteries, the cathode also serves as the source of Li for …

Hard X-ray imaging and tomography at the Biomedical Imaging and Therapy beamlines of Canadian Light Source

S Gasilov, MA Webb, A Panahifar, N Zhu… - Synchrotron …, 2024 - journals.iucr.org
The Biomedical Imaging and Therapy facility of the Canadian Light Source comprises two
beamlines, which together cover a wide X-ray energy range from 13 keV up to 140 keV. The …