Long‐cycle‐life cathode materials for sodium‐ion batteries toward large‐scale energy storage systems

H Zhang, Y Gao, X Liu, L Zhou, J Li… - Advanced Energy …, 2023 - Wiley Online Library
The development of large‐scale energy storage systems (ESSs) aimed at application in
renewable electricity sources and in smart grids is expected to address energy shortage and …

Potassium-ion batteries: outlook on present and future technologies

X Min, J **ao, M Fang, WA Wang, Y Zhao… - Energy & …, 2021 - pubs.rsc.org
The limited resources and uneven distribution of lithium stimulate strong motivation to
develop new rechargeable batteries that use alternative charge carriers. Potassium-ion …

Opportunities for moderate-range electric vehicles using sustainable sodium-ion batteries

A Rudola, R Sayers, CJ Wright, J Barker - Nature Energy, 2023 - nature.com
Today's sodium-ion batteries can not only be used in stationary energy storage applications,
but also in 160–280 mile driving-range five-passenger electric vehicles. This technology will …

Electrolyte/electrode interfacial electrochemical behaviors and optimization strategies in aqueous zinc-ion batteries

M Zhou, Y Chen, G Fang, S Liang - Energy Storage Materials, 2022 - Elsevier
Aqueous zinc-ion batteries (ZIBs) are considered as a promising alternative for the large-
scale energy storage due to the environmental friendliness, low cost, intrinsic safety …

Challenges of today for Na-based batteries of the future: From materials to cell metrics

I Hasa, S Mariyappan, D Saurel, P Adelhelm… - Journal of Power …, 2021 - Elsevier
Several emerging battery technologies are currently on endeavour to take a share of the
dominant position taken by Li-ion batteries in the field of energy storage. Among them …

Advances in intelligent regeneration of cathode materials for sustainable lithium‐ion batteries

Y **, T Zhang, M Zhang - Advanced Energy Materials, 2022 - Wiley Online Library
Explosively increased market penetration of lithium‐ion batteries (LIBs) in electric vehicles,
consumer electronics, and stationary energy storage devices has recently aroused new …

Metal-air batteries—a review

AG Olabi, ET Sayed, T Wilberforce, A Jamal, AH Alami… - Energies, 2021 - mdpi.com
Metal–air batteries are a promising technology that could be used in several applications,
from portable devices to large-scale energy storage applications. This work is a …

Electrochemical activation, sintering, and reconstruction in energy‐storage technologies: origin, development, and prospects

D Zhang, J Lu, C Pei, S Ni - Advanced Energy Materials, 2022 - Wiley Online Library
Although there has been significant progress in designing electrode materials and exploring
the electrochemical reaction mechanisms in battery systems, the morphological, structural …

Should we recycle the graphite from spent lithium-ion batteries? The untold story of graphite with the importance of recycling

S Natarajan, ML Divya, V Aravindan - Journal of Energy Chemistry, 2022 - Elsevier
Demand for graphite in the forthcoming years to develop Li-ion batteries (LIBs) with the goal
of driving electric vehicles (EV) and its requirement in multifarious energy storage …

Challenges and prospects of nanosized silicon anodes in lithium-ion batteries

X Zhao, VP Lehto - Nanotechnology, 2020 - iopscience.iop.org
Batteries are commonly considered one of the key technologies to reduce carbon dioxide
emissions caused by the transport, power, and industry sectors. We need to remember that …