Research progress on negative electrodes for practical Li‐ion batteries: beyond carbonaceous anodes

V Aravindan, YS Lee, S Madhavi - Advanced Energy Materials, 2015 - Wiley Online Library
Research activities related to the development of negative electrodes for construction of high‐
performance Li‐ion batteries (LIBs) with conventional cathodes such as LiCoO2, LiFePO4 …

Lithium ion battery anode aging mechanisms

V Agubra, J Fergus - Materials, 2013 - mdpi.com
Degradation mechanisms such as lithium plating, growth of the passivated surface film layer
on the electrodes and loss of both recyclable lithium ions and electrode material adversely …

Calendar aging of NCA lithium-ion batteries investigated by differential voltage analysis and coulomb tracking

P Keil, A Jossen - Journal of The Electrochemical Society, 2016 - iopscience.iop.org
Calendar aging of lithium-ion cells is investigated by storing commercial 18650 cells with
NCA cathode and graphite anode at different states of charge and temperatures. The …

Aging of lithium-ion batteries in electric vehicles

P Keil - 2017 - mediatum.ub.tum.de
The battery life is one of the central challenges in the development of electric vehicles. This
thesis investigates the aging of lithium-ion batteries in electric vehicle applications based on …

Li4Ti5O12-based energy conversion and storage systems: Status and prospects

G Xu, P Han, S Dong, H Liu, G Cui, L Chen - Coordination Chemistry …, 2017 - Elsevier
The “zero-strain” spinel lithium titanate oxide (Li 4 Ti 5 O 12) has been extensively studied
as one of the most promising alternatives to carbon materials in energy conversion and …

Long-term cyclability of Li4Ti5O12/LiMn2O4 cells using carbonate-based electrolytes for behind-the-meter storage applications

Y Ha, SP Harvey, G Teeter, AM Colclasure… - Energy Storage …, 2021 - Elsevier
Abstract Li 4 Ti 5 O 12/LiMn 2 O 4 (LTO/LMO) chemistry was evaluated as a potential
candidate for behind-the-meter storage (BTMS) applications. Its long-term cycle …

(Li, Al)-co-doped spinel, Li (Li0. 1Al0. 1Mn1. 8) O4 as high performance cathode for lithium ion batteries

M Prabu, MV Reddy, S Selvasekarapandian… - Electrochimica …, 2013 - Elsevier
(Li, Al)-co-doped manganese oxide spinel compounds, Li (Li0. 1Al0. 1Mn1. 8) O4 are
prepared at temperatures (T), 600, 650 and 750° C by polymer precursor method using …

Quantification analysis and kinetic modeling of crosstalk reactions in lithium-ion batteries using a four-electrode cell

K Ariyoshi, A Maekawa, T Nakamura - Journal of Electroanalytical …, 2022 - Elsevier
Crosstalk reactions in Li-ion batteries play an important role in the capacity fading caused by
imbalance of the states-of-charge between positive and negative electrodes. A quantitative …

Synthesis and Characterization of W-Nb Oxides (WO3-Nb2O5) for Large-Volumetric-Capacity Negative Electrodes

K Ariyoshi, N Ohji - ACS Applied Energy Materials, 2023 - ACS Publications
To develop lithium insertion materials used in lithium-ion batteries in terms of reversible
capacity, it is desirable for crystal structures that can reversibly accommodate more Li ions in …

Improved lithium-ion battery performance of LiNi0. 5Mn1. 5− xTixO4 high voltage spinel in full-cells paired with graphite and Li4Ti5O12 negative electrodes

JH Kim, NPW Pieczonka, YK Sun, BR Powell - Journal of Power Sources, 2014 - Elsevier
The effect of Ti-substitution on the electrochemical properties of LiNi 0.5 Mn 1.5− x Ti x O 4
was investigated by using half-cells paired with lithium metal, and full-cells paired with either …