Chemomechanics of rechargeable batteries: status, theories, and perspectives

LS de Vasconcelos, R Xu, Z Xu, J Zhang… - Chemical …, 2022 - ACS Publications
Chemomechanics is an old subject, yet its importance has been revived in rechargeable
batteries where the mechanical energy and damage associated with redox reactions can …

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 …

Operando visualization and multi-scale tomography studies of dendrite formation and dissolution in zinc batteries

V Yufit, F Tariq, DS Eastwood, M Biton, B Wu, PD Lee… - Joule, 2019 - cell.com
Alternative battery technologies are required to meet growing energy demands and address
the limitations of present technologies. As such, it is necessary to look beyond lithium-ion …

X-ray tomography for lithium ion battery research: a practical guide

P Pietsch, V Wood - Annual Review of Materials Research, 2017 - annualreviews.org
X-ray tomography has emerged as a powerful technique for studying lithium ion batteries,
allowing nondestructive and often quantitative imaging of these complex systems, which …

Electrochemical thermal-mechanical modelling of stress inhomogeneity in lithium-ion pouch cells

W Ai, L Kraft, J Sturm, A Jossen… - Journal of The …, 2020 - iopscience.iop.org
Whilst extensive research has been conducted on the effects of temperature in lithium-ion
batteries, mechanical effects have not received as much attention despite their importance …

Imaging of 3D morphological evolution of nanoporous silicon anode in lithium ion battery by X-ray nano-tomography

C Zhao, T Wada, V De Andrade, D Gürsoy, H Kato… - Nano energy, 2018 - Elsevier
Nanostructured silicon with its high theoretical capacity and ability to accommodate volume
expansion has attracted great attention as a promising anode material for Lithium ion (Li …

[HTML][HTML] Visualizing battery reactions and processes by using in situ and in operando microscopies

Y Wu, N Liu - Chem, 2018 - cell.com
Based on traditional electronic, X-ray, and optical microscopies, novel tools and
methodologies have been developed to monitor batteries in situ or in operando. This review …

Novel application of differential thermal voltammetry as an in-depth state-of-health diagnosis method for lithium-ion batteries

Y Merla, B Wu, V Yufit, NP Brandon… - Journal of Power …, 2016 - Elsevier
Understanding and tracking battery degradation mechanisms and adapting its operation
have become a necessity in order to enhance battery durability. A novel use of differential …

Silicon as anode material for Li-ion batteries

F Ozanam, M Rosso - Materials Science and Engineering: B, 2016 - Elsevier
Silicon is considered as a promising anode material for Li-ion batteries because of its record
capacity (about 4000 mAh g− 1), more than ten times higher than that of graphite, which is …

Investigation of voltage and expansion hysteresis of Si-alloy-C/NMC622 pouch cells using dilatometry

P Kargl, V Drews, P Daubinger, O Schweighofer… - Journal of Power …, 2022 - Elsevier
Silicon is a promising candidate to replace graphite as the anode active material for lithium-
ion cells due to its high specific capacity. However, the material undergoes large volume …