Results 211 to 220 of about 25,146 (269)
Some of the next articles are maybe not open access.

The Li-Ion Rechargeable Battery: A Perspective

Journal of the American Chemical Society, 2013
Each cell of a battery stores electrical energy as chemical energy in two electrodes, a reductant (anode) and an oxidant (cathode), separated by an electrolyte that transfers the ionic component of the chemical reaction inside the cell and forces the electronic component outside the battery.
John B, Goodenough, Kyu-Sung, Park
openaire   +2 more sources

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
openaire   +2 more sources

Capacity estimation for Li-ion batteries

Proceedings of the 2011 American Control Conference, 2011
This paper presents onboard capacity estimation algorithms for Li-ion batteries deployed in plug-in hybrid electric vehicles (PHEV) and electric vehicles (EV). Capacity estimation algorithms are developed based on an equivalent circuit model. The onboard estimation of battery capacity is treated separately for the driving mode and plug-in charge mode ...
Xidong Tang   +3 more
openaire   +1 more source

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
openaire   +1 more source

Li-Ion Nanotubes for Li-Ion and Li-Sulphur Batteries

ECS Meeting Abstracts, 2015
Rechargeable lithium-ion batteries are considered to be the most promising energy storage due to their long cycle life and high specific capacity.[i] However, existing lithium-ion batteries use graphite as anode material and this is not efficient enough to reach market level to be employed in vehicles.
Nanami Yokota, Maria Alfredsson
openaire   +1 more source

Technology of the Li-Ion Batteries

2016
As we have seen in different chapters of this book, the electrodes are usually tested from half-cells consisting of lithium metal as the counter-electrode. This is a convenient tool to determine the irreversible capacity loss during the first and eventually the second cycle, the reversible capacity at available at different rates, the operating voltage.
Christian Julien   +3 more
openaire   +1 more source

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.
openaire   +1 more source

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
openaire   +3 more sources

Anodes for Li-Ion Batteries

2016
The active elements for negative (anode) electrodes are reviewed here according to the following sequence. First, the carbon anode is considered, since almost all the Li-ion batteries on the market are presently equipped with graphitic carbon. Then the next elements of the Mendeleev table (Si, Ge, …) are considered.
Christian Julien   +3 more
openaire   +1 more source

Nanocarbons in Li-Ion Batteries

2018
The ever-increasing demand for advanced power sources with higher energy density and various form factors strongly pushes us to search for new battery materials and structures beyond current state-of-the-art Li-ion batteries (LIBs). Recent progress in nanoscience and nanotechnology suggests opportunities to develop novel electrode materials and ...
Seok-Kyu Cho   +2 more
openaire   +1 more source

Home - About - Disclaimer - Privacy