Degradation mechanisms in Li‐ion batteries: a state‐of‐the‐art review

MM Kabir, DE Demirocak - International Journal of Energy …, 2017 - Wiley Online Library
One of the most prominent energy storage technologies which are under continuous
development, especially for mobile applications, is the Li‐ion batteries due to their superior …

In situ methods for Li-ion battery research: A review of recent developments

P Harks, FM Mulder, PHL Notten - Journal of power sources, 2015 - Elsevier
A considerable amount of research is being directed towards improving lithium-ion batteries
in order to meet today's market demands. In particular in situ investigations of Li-ion batteries …

A single particle model with chemical/mechanical degradation physics for lithium ion battery State of Health (SOH) estimation

J Li, K Adewuyi, N Lotfi, RG Landers, J Park - Applied energy, 2018 - Elsevier
State of Health (SOH) estimation of lithium ion batteries is critical for Battery Management
Systems (BMSs) in Electric Vehicles (EVs). Many estimation techniques utilize a battery …

Multi-scale investigation of thickness changes in a commercial pouch type lithium-ion battery

B Rieger, S Schlueter, SV Erhard, J Schmalz… - Journal of Energy …, 2016 - Elsevier
The thickness change of a commercial pouch type lithium-ion battery with a graphite anode
and a LiCoO 2 cathode is investigated at multiple scales. The fraction of anode and cathode …

Real-time monitoring of stress development during electrochemical cycling of electrode materials for Li-ion batteries: overview and perspectives

MK Jangid, A Mukhopadhyay - Journal of Materials Chemistry A, 2019 - pubs.rsc.org
One of the major issues associated with Li-ion batteries is the stress development in
electrode materials. Such stresses arise primarily from dimensional changes …

Multi-scale coupled mechanical-electrochemical modeling for study on stress generation and its impact on multi-layered electrodes in lithium-ion batteries

YK Lee, J Song, J Park - Electrochimica Acta, 2021 - Elsevier
This study develops a physics-based mechanical-electrochemical coupled modeling
framework to investigate the stress generation and its impact on cell performance. This …

Scanning probe microscopy based characterization of battery materials, interfaces, and processes

R Kempaiah, G Vasudevamurthy, A Subramanian - Nano Energy, 2019 - Elsevier
Increasing demand for sustainable battery technologies has necessitated substantive global
research efforts towards delivering improvements in terms of both, the underlying battery …

Beyond imaging: Applications of atomic force microscopy for the study of Lithium-ion batteries

W Zhao, W Song, LZ Cheong, D Wang, H Li… - Ultramicroscopy, 2019 - Elsevier
Research and development of lithium-ion batteries (LIBs) require powerful characterization
approaches. Atomic force microscopy (AFM) is a multifunctional method that allows …

[HTML][HTML] Experimental study of the impedance behavior of 18650 lithium-ion battery cells under deforming mechanical abuse

M Spielbauer, P Berg, M Ringat, O Bohlen… - Journal of Energy …, 2019 - Elsevier
Due to rising safety requirements for lithium-ion batteries, the detection of mechanical failure
of such batteries is becoming increasingly important. As publications investigating …

Influence of breathing and swelling on the jelly-roll case gap of cylindrical lithium-ion battery cells

M Spielbauer, M Steinhardt, J Singer, A Aufschläger… - Batteries, 2022 - mdpi.com
Cylindrical 18650 and 21700 lithium-ion batteries are produced with small gaps between
the jelly roll and the case. The size of these gaps and the mechanical attachment of the jelly …