P. Albertus, J. Christensen, and J. Newman, Experiments on and Modeling of Positive Electrodes with Multiple Active Materials for Lithium-Ion Batteries, Journal of The Electrochemical Society, vol.156, issue.7, p.A606, 2009.

J. Kirner, Y. Qin, L. Zhang, A. Jansen, and W. Lu, Optimization of Graphite?SiO blend electrodes for lithium-ion batteries: Stable cycling enabled by single-walled carbon nanotube conductive additive, Journal of Power Sources, vol.450, p.227711, 2020.

J. Kirner, Y. Qin, L. Zhang, A. Jansen, and W. Lu, Optimization of Graphite?SiO blend electrodes for lithium-ion batteries: Stable cycling enabled by single-walled carbon nanotube conductive additive, Journal of Power Sources, vol.450, p.227711, 2020.

T. Liebmann, C. Heubner, C. Lämmel, M. Schneider, and A. Michaelis, Investigations on the Effective Electric Loads in Blended Insertion Electrodes for Lithium?Ion Batteries, ChemElectroChem, vol.6, issue.22, pp.5728-5734, 2019.

C. Heubner, T. Liebmann, C. Lämmel, M. Schneider, and A. Michaelis, Internal dynamics of blended Li-insertion electrodes, Journal of Energy Storage, vol.20, pp.101-108, 2018.

C. Heubner, T. Liebmann, C. Lämmel, M. Schneider, and A. Michaelis, Internal dynamics of blended Li-insertion electrodes, Journal of Energy Storage, vol.20, pp.101-108, 2018.

E. Prada, D. Di-domenico, Y. Creff, J. Bernard, and V. Sauvant-moynot, A coupled OD electrochemical ageing & electro-thermal Li-ion modeling approach for HEV/PHEV, 2011 IEEE Vehicle Power and Propulsion Conference, 2011.

J. Bisquert, G. Garcia-belmonte, P. Bueno, E. Longo, and L. O. Bulhões, Impedance of constant phase element (CPE)-blocked diffusion in film electrodes, J.Electroanal.Chem, vol.452, issue.2, pp.115-121, 1998.

A. Rodríguez and G. L. Plett, Controls-oriented models of lithium-ion cells having blend electrodes. Part 1: Equivalent circuits, Journal of Energy Storage, vol.11, pp.162-177, 2017.

A. Rodríguez and G. L. Plett, Controls-oriented models of lithium-ion cells having blend electrodes. Part 1: Equivalent circuits, Journal of Energy Storage, vol.11, pp.162-177, 2017.

A. Rodríguez and G. L. Plett, Controls-oriented models of lithium-ion cells having blend electrodes. Part 2: Physics-based reduced-order models, Journal of Energy Storage, vol.11, pp.219-236, 2017.

J. Newman and W. Tiedemann, Porous-electrode theory with battery applications, AIChE Journal, vol.21, issue.1, pp.25-41, 1975.

K. Smith and C. Y. Wang, Power and thermal characterization of a lithium-ion battery pack for hybrid-electric vehicles, Journal of Power Sources, vol.160, issue.1, pp.662-673, 2006.

N. Legrand, S. Raël, B. Knosp, M. Hinaje, P. Desprez et al., Including double-layer capacitance in lithium-ion battery mathematical models, Journal of Power Sources, vol.251, pp.370-378, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01275721

M. Safari and C. Delacourt, Modeling of a Commercial Graphite/LiFePO4 Cell, Journal of The Electrochemical Society, vol.158, issue.5, p.A562, 2011.

X. Yang, Y. Leng, G. Zhang, S. Ge, and C. Wang, Modeling of lithium plating induced aging of lithium-ion batteries: Transition from linear to nonlinear aging, Journal of Power Sources, vol.360, pp.28-40, 2017.

E. Prada, D. Di-domenico, Y. Creff, J. Bernard, V. Sauvant-moynot et al., A Simplified Electrochemical and Thermal Aging Model of LiFePO4-Graphite Li-ion Batteries: Power and Capacity Fade Simulations, Journal of The Electrochemical Society, vol.160, issue.4, pp.A616-A628, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00788280

E. Prada, D. Di-domenico, Y. Creff, J. Bernard, V. Sauvant-moynot et al., A Simplified Electrochemical and Thermal Aging Model of LiFePO4-Graphite Li-ion Batteries: Power and Capacity Fade Simulations, Journal of The Electrochemical Society, vol.160, issue.4, pp.A616-A628, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00788280

M. Safari and C. Delacourt, Simulation-Based Analysis of Aging Phenomena in a Commercial Graphite/LiFePO4 Cell, Journal of The Electrochemical Society, vol.158, issue.12, p.A1436, 2011.

C. Edouard, M. Petit, C. Forgez, J. Bernard, and R. Revel, Parameter sensitivity analysis of a simplified electrochemical and thermal model for Li-ion batteries aging, Journal of Power Sources, vol.325, pp.482-494, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01449617

D. Di-domenico, A. Stefanopoulou, and G. Fiengo, Lithium-Ion Battery State of Charge and Critical Surface Charge Estimation Using an Electrochemical Model-Based Extended Kalman Filter, Journal of Dynamic Systems, Measurement, and Control, vol.132, issue.6, pp.61302-61303, 2010.

E. Prada, D. Di-domenico, Y. Creff, J. Bernard, V. Sauvant-moynot et al., Simplified Electrochemical and Thermal Model of LiFePO4-Graphite Li-Ion Batteries for Fast Charge Applications, Journal of The Electrochemical Society, vol.159, issue.9, pp.A1508-A1519, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00780212

E. Prada, D. Di-domenico, Y. Creff, J. Bernard, V. Sauvant-moynot et al., Simplified Electrochemical and Thermal Model of LiFePO4-Graphite Li-Ion Batteries for Fast Charge Applications, Journal of The Electrochemical Society, vol.159, issue.9, pp.A1508-A1519, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00780212

Z. Mao, M. Farkhondeh, M. Pritzker, M. Fowler, and Z. Chen, Multi-Particle Model for a Commercial Blended Lithium-Ion Electrode, Journal of The Electrochemical Society, vol.163, issue.3, pp.A458-A469, 2015.

Z. Mao, M. Farkhondeh, M. Pritzker, M. Fowler, and Z. Chen, Dynamics of a Blended Lithium-Ion Battery Electrode During Galvanostatic Intermittent Titration Technique, Electrochimica Acta, vol.222, pp.1741-1750, 2016.

Z. Mao, M. Farkhondeh, M. Pritzker, M. Fowler, and Z. Chen, Dynamics of a Blended Lithium-Ion Battery Electrode During Galvanostatic Intermittent Titration Technique, Electrochimica Acta, vol.222, pp.1741-1750, 2016.

S. Carelli, M. Quarti, M. C. Yagci, and W. G. Bessler, Modeling and Experimental Validation of a High-Power Lithium-Ion Pouch Cell with LCO/NCA Blend Cathode, Journal of The Electrochemical Society, vol.166, issue.13, pp.A2990-A3003, 2019.

N. Nitta, F. Wu, J. T. Lee, and G. Yushin, Li-ion battery materials: present and future, Materials Today, vol.18, issue.5, pp.252-264, 2015.

P. Schröer, H. Van-faassen, T. Nemeth, M. Kuipers, and D. U. Sauer, Challenges in modeling high power lithium titanate oxide cells in battery management systems, Journal of Energy Storage, vol.28, p.101189, 2020.

E. Eig and . Product, Fries (eig. Mellis), Augustin, p.16

D. H. Doughty and C. C. Crafts, FreedomCAR :electrical energy storage system abuse test manual for electric and hybrid electric vehicle applications., 2006.

M. Guo, G. Sikha, and R. E. White, Publisher?s Note: Single-Particle Model for a Lithium-Ion Cell: Thermal Behavior [J. Electrochem. Soc., 158, A122 (2011)], Journal of The Electrochemical Society, vol.158, issue.5, p.S11, 2011.

M. Guo, G. Sikha, and R. E. White, Single-Particle Model for a Lithium-Ion Cell: Thermal Behavior, Journal of The Electrochemical Society, vol.158, issue.2, p.A122, 2011.

Y. Dai, L. Cai, and R. E. White, Capacity Fade Model for Spinel LiMn2O4Electrode, Journal of The Electrochemical Society, vol.160, issue.1, pp.A182-A190, 2012.

W. Lu, I. Belharouak, J. Liu, and K. Amine, Thermal properties of Li4/3Ti5/3O4/LiMn2O4 cell, Journal of Power Sources, vol.174, issue.2, pp.673-677, 2007.

W. Lu, I. Belharouak, J. Liu, and K. Amine, Thermal properties of Li4/3Ti5/3O4/LiMn2O4 cell, Journal of Power Sources, vol.174, issue.2, pp.673-677, 2007.

J. Zhang, W. Wang, J. Xiao, W. Xu, G. L. Graff et al., Silicon-Based Anodes Li-ion battery, see also lithium-ion battery silicon-based anodes for Li-Ion Batteries Li-ion battery, see also lithium-ion battery, Encyclopedia of Sustainability Science and Technology, pp.9293-9316, 2012.

. Electrolytes, J.Electrochem.Soc, vol.152, issue.5, p.882, 2005.

L. O. Valo?en and J. N. Reimers, Transport Properties of LiPF[sub 6]-Based Li-Ion Battery Electrolytes, Journal of The Electrochemical Society, vol.152, issue.5, p.A882, 2005.

M. Doyle, J. Newman, A. S. Gozdz, C. N. Schmutz, and J. Tarascon, Comparison of Modeling Predictions with Experimental Data from Plastic Lithium Ion Cells, Journal of The Electrochemical Society, vol.143, issue.6, pp.1890-1903, 1996.

M. Doyle, J. Newman, A. S. Gozdz, C. N. Schmutz, and J. Tarascon, Comparison of Modeling Predictions with Experimental Data from Plastic Lithium Ion Cells, Journal of The Electrochemical Society, vol.143, issue.6, pp.1890-1903, 1996.

A. G. Kashkooli, G. Lui, S. Farhad, D. U. Lee, K. Feng et al., Nano-particle size effect on the performance of Li4Ti5O12 spinel, Electrochimica Acta, vol.196, pp.33-40, 2016.