Recycling of lithium‐ion batteries—current state of the art, circular economy, and next generation recycling

J Neumann, M Petranikova, M Meeus… - Advanced energy …, 2022 - Wiley Online Library
Being successfully introduced into the market only 30 years ago, lithium‐ion batteries have
become state‐of‐the‐art power sources for portable electronic devices and the most …

Lignin for energy applications–state of the art, life cycle, technoeconomic analysis and future trends

A Beaucamp, M Muddasar, IS Amiinu, MM Leite… - Green …, 2022 - pubs.rsc.org
Lignin is produced in large quantities as a by-product of the papermaking and biofuel
industries. Lignin is the most abundant aromatic biopolymer on the planet with its chemical …

[HTML][HTML] Lithium-sulfur battery diagnostics through distribution of relaxation times analysis

R Soni, JB Robinson, PR Shearing, DJL Brett… - Energy Storage …, 2022 - Elsevier
Electrochemical impedance spectroscopy (EIS) is widely used in battery analysis as it is
simple to implement and non-destructive. However, the data provided is a global …

Roadmap for a sustainable circular economy in lithium-ion and future battery technologies

GDJ Harper, E Kendrick, PA Anderson… - Journal of Physics …, 2023 - iopscience.iop.org
The market dynamics, and their impact on a future circular economy for lithium-ion batteries
(LIB), are presented in this roadmap, with safety as an integral consideration throughout the …

[HTML][HTML] Review on new-generation batteries technologies: trends and future directions

K Itani, A De Bernardinis - Energies, 2023 - mdpi.com
Battery technologies have recently undergone significant advancements in design and
manufacturing to meet the performance requirements of a wide range of applications …

Toward Practical Li–S Batteries: On the Road to a New Electrolyte

X Song, X Liang, J Eko, HH Sun, JM Kim… - Advanced Energy …, 2024 - Wiley Online Library
The lithium–sulfur (Li–S) battery system has attracted considerable attention due to its
ultrahigh theoretical energy density and promising applications. However, with the …

Exploring advances in sulfur composite cathodes for lithium-sulfur batteries: A comprehensive review

S Tiwari, V Yadav, AK Poonia, D Pal - Journal of Energy Storage, 2024 - Elsevier
Lithium‑sulfur batteries (LSBs) have emerged as a promising contender to replace
conventional lithium-ion batteries (LIBs). Primarily due to their impressive advantages …

Self-discharge in rechargeable electrochemical energy storage devices

B Babu - Energy Storage Materials, 2024 - Elsevier
Self-discharge is one of the limiting factors of energy storage devices, adversely affecting
their electrochemical performances. A comprehensive understanding of the diverse factors …

A review on the use of carbonate-based electrolytes in Li-S batteries: A comprehensive approach enabling solid-solid direct conversion reaction

A Rafie, JW Kim, KK Sarode, V Kalra - Energy Storage Materials, 2022 - Elsevier
Li-S batteries have attracted great attention from academia and industry because of their
high theoretical capacity and energy density, arising from the multi-electron electrochemical …

Graphene‐Based Sulfur Cathodes and Dual Salt‐Based Sparingly Solvating Electrolytes: A Perfect Marriage for High Performing, Safe, and Long Cycle Life Lithium …

J Castillo, A Soria‐Fernández… - Advanced Energy …, 2024 - Wiley Online Library
The growing requirements for electrified applications entail exploring alternative battery
systems. Lithium‐sulfur batteries (LSBs) have emerged as a promising, cost‐effective, and …