Toward high-sulfur-content, high-performance lithium-sulfur batteries: Review of materials and technologies

F Zhao, J Xue, W Shao, H Yu, W Huang… - Journal of Energy …, 2023 - Elsevier
Lithium sulfur batteries (LSBs) are recognized as promising devices for developing next-
generation energy storage systems. In addition, they are attractive rechargeable battery …

Strategies towards a more sustainable aviation: A systematic review

F Afonso, M Sohst, CMA Diogo, SS Rodrigues… - Progress in Aerospace …, 2023 - Elsevier
As climate change is exacerbated and existing resources are depleted, the need for
sustainable industries becomes ever so important. Aviation is not an exception. Despite the …

Electrode degradation in lithium-ion batteries

JP Pender, G Jha, DH Youn, JM Ziegler, I Andoni… - ACS …, 2020 - ACS Publications
Although Li-ion batteries have emerged as the battery of choice for electric vehicles and
large-scale smart grids, significant research efforts are devoted to identifying materials that …

Current status and future prospects of metal–sulfur batteries

SH Chung, A Manthiram - Advanced Materials, 2019 - Wiley Online Library
Lithium–sulfur batteries are a major focus of academic and industrial energy‐storage
research due to their high theoretical energy density and the use of low‐cost materials. The …

Review of energy storage systems for vehicles based on technology, environmental impacts, and costs

Y Balali, S Stegen - Renewable and Sustainable Energy Reviews, 2021 - Elsevier
Reduction in fossil fuel dependency has been an issue worldwide for several years. One of
the solutions in the transportation sector to reduce the GHG, is the replacement of …

PBA composites and their derivatives in energy and environmental applications

X Wu, Y Ru, Y Bai, G Zhang, Y Shi, H Pang - Coordination Chemistry …, 2022 - Elsevier
Nowadays, energy solutions and environmental remediation methods are vigorously
developed to tackle the energy crisis and environmental pollution. Prussian blue analogues …

Weakening Li+ De‐solvation Barrier for Cryogenic Li–S Pouch Cells

H Ji, Z Wang, Y Sun, Y Zhou, S Li, J Zhou… - Advanced …, 2023 - Wiley Online Library
Li–S batteries hold promise for pushing cell‐level energy densities beyond 300 Wh kg‐1
while operating at low temperatures (LTs, below 0° C). However, the capacity release of …

A comprehensive understanding of lithium–sulfur battery technology

T Li, X Bai, U Gulzar, YJ Bai, C Capiglia… - Advanced Functional …, 2019 - Wiley Online Library
Lithium–sulfur batteries (LSBs) are regarded as a new kind of energy storage device due to
their remarkable theoretical energy density. However, some issues, such as the low …

Pristine metal–organic frameworks and their composites for energy storage and conversion

Z Liang, C Qu, W Guo, R Zou, Q Xu - Advanced Materials, 2018 - Wiley Online Library
Abstract Metal–organic frameworks (MOFs), a new class of crystalline porous organic–
inorganic hybrid materials, have recently attracted increasing interest in the field of energy …

Lithium ion, lithium metal, and alternative rechargeable battery technologies: the odyssey for high energy density

T Placke, R Kloepsch, S Dühnen, M Winter - Journal of Solid State …, 2017 - Springer
Since their market introduction in 1991, lithium ion batteries (LIBs) have developed
evolutionary in terms of their specific energies (Wh/kg) and energy densities (Wh/L) …