Oxygen loss in layered oxide cathodes for Li-ion batteries: mechanisms, effects, and mitigation

H Zhang, H Liu, LFJ Piper, MS Whittingham… - Chemical …, 2022 - ACS Publications
Layered lithium transition metal oxides derived from LiMO2 (M= Co, Ni, Mn, etc.) have been
widely adopted as the cathodes of Li-ion batteries for portable electronics, electric vehicles …

[HTML][HTML] Lithium-ion battery data and where to find it

G Dos Reis, C Strange, M Yadav, S Li - Energy and AI, 2021 - Elsevier
Lithium-ion batteries are fuelling the advancing renewable-energy based world. At the core
of transformational developments in battery design, modelling and management is data. In …

Why do batteries fail?

MR Palacín, A de Guibert - Science, 2016 - science.org
BACKGROUND We are all familiar with the importance of mobile power sources
(automobile batteries, cell phone batteries, etc.) and their seeming tendency to malfunction …

Calendar aging of lithium-ion batteries

P Keil, SF Schuster, J Wilhelm, J Travi… - Journal of The …, 2016 - iopscience.iop.org
In this study, the calendar aging of lithium-ion batteries is investigated at different
temperatures for 16 states of charge (SoCs) from 0 to 100%. Three types of 18650 lithium …

Recent advances and historical developments of high voltage lithium cobalt oxide materials for rechargeable Li-ion batteries

K Wang, J Wan, Y Xiang, J Zhu, Q Leng, M Wang… - Journal of Power …, 2020 - Elsevier
One of the big challenges for enhancing the energy density of lithium ion batteries (LIBs) to
meet increasing demands for portable electronic devices is to develop the high voltage …

Transition metal dissolution, ion migration, electrocatalytic reduction and capacity loss in lithium-ion full cells

JA Gilbert, IA Shkrob, DP Abraham - Journal of The …, 2017 - iopscience.iop.org
Continuous operation of full cells with layered transition metal (TM) oxide positive electrodes
(NCM523) leads to dissolution of TM ions and their migration and incorporation into the solid …

Recent progress of aqueous and organic/aqueous hybrid electrolytes for low-temperature rechargeable metal-ion batteries and supercapacitors

X Gao, J Yang, Z Xu, Y Nuli, J Wang - Energy Storage Materials, 2023 - Elsevier
Aqueous rechargeable metal-ion batteries (ARMBs) and supercapacitors have received
extensive research attention owing to their intrinsic high ionic conductivity, high safety, low …

Integrating physics-based modeling and machine learning for degradation diagnostics of lithium-ion batteries

A Thelen, YH Lui, S Shen, S Laflamme, S Hu… - Energy Storage …, 2022 - Elsevier
Traditional lithium-ion (Li-ion) battery state of health (SOH) estimation methodologies that
focused on estimating present cell capacity do not provide sufficient information to determine …

Nonlinear aging characteristics of lithium-ion cells under different operational conditions

SF Schuster, T Bach, E Fleder, J Müller, M Brand… - Journal of Energy …, 2015 - Elsevier
The potential reuse of lithium-ion batteries exhausted upon electric vehicle operation is a
broadly discussed topic. However, a profound understanding of battery aging behavior is a …

Degradation of lithium ion batteries employing graphite negatives and nickel–cobalt–manganese oxide+ spinel manganese oxide positives: Part 1, aging mechanisms …

J Wang, J Purewal, P Liu, J Hicks-Garner… - Journal of Power …, 2014 - Elsevier
We examine the aging and degradation of graphite/composite metal oxide cells. Non-
destructive electrochemical methods were used to monitor the capacity loss, voltage drop …