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Before Li Ion Batteries

Chemical Reviews, 2018
This Review covers a sequence of key discoveries and technical achievements that eventually led to the birth of the lithium-ion battery. In doing so, it not only sheds light on the history with the advantage of contemporary hindsight but also provides insight and inspiration to aid in the ongoing quest for better batteries of the future.
Martin Winter, Brian Barnett, Kang Xu
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Li-ion battery electrolytes

Nature Energy, 2021
The electrolyte is an indispensable component in any electrochemical device. In Li-ion batteries, the electrolyte development experienced a tortuous pathway closely associated with the evolution of electrode chemistries.
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Hysteresis Modeling in Li-Ion Batteries

IEEE Transactions on Magnetics, 2014
This paper investigates the applicability of the scalar Preisach model to describe the hysteresis in the state of charge versus open-circuit voltage plane of lithium-iron-phosphate batteries. The model is implemented using the Everett function, identified with experimental data related to first-order reversal hysteresis branches.
BARONTI, FEDERICO   +4 more
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Boostcharging Li-ion batteries: A challenging new charging concept

Journal of Power Sources, 2005
Boostcharging is proposed as a new, ultra-fast, recharging algorithm for Li-ion batteries. Characteristic for boostcharging is that close-to-fully discharged batteries can be recharged with very high currents for a short period of time. Cycle life of Li-ion batteries, boostcharged and additionally standard charged to full capacity do not introduce any ...
Notten, P.H.L.   +2 more
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Li-ion battery recycling challenges

Chem, 2021
Summary Lithium-ion battery (LIB) recycling is critical given the continued electrification of vehicles and mass generation of spent LIBs. However, industrial-level recycling is hampered by a variety of factors that make large-scale recycling difficult while maintaining economic viability. Here, we address these challenges and provide guidance toward
Xiaotu Ma, Luqman Azhari, Yan Wang
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Thermomanagement of Li-ion batteries

ATZ worldwide, 2009
With the increasing electrification of vehicle power trains, the electrical energy storage unit is assuming an ever stronger role as a key technology in the drive concept. While today’s series-produced hybrid vehicles still use nickel metal- hydrid batteries, ever-greater demands are necessitating a change in technology to the lithium-ion battery.
Achim Wiebelt   +3 more
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Electrodes for Li‐Ion Batteries

2015
The electrochemical energy storage is a means to conserve electrical energy in chemical form. This form of storage benefits from the fact that these two energies share the same vector, the electron. This advantage allows us to limit the losses related to the conversion of energy from one form to another.
Monconduit, Laure   +2 more
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