Hard carbon anodes: fundamental understanding and commercial perspectives for Na‐ion batteries beyond Li‐ion and K‐ion counterparts

LF Zhao, Z Hu, WH Lai, Y Tao, J Peng… - Advanced Energy …, 2021 - Wiley Online Library
Hard carbon (HC) is recognized as a promising anode material with outstanding
electrochemical performance for alkali metal‐ion batteries including lithium‐ion batteries …

Toward emerging two-dimensional nickel-based materials for electrochemical energy storage: Progress and perspectives

W Xu, X Zhao, F Zhan, Q He, H Wang, J Chen… - Energy Storage …, 2022 - Elsevier
Abstract Two-dimensional (2D) Ni-based materials have attracted considerable attention
due to their distinctive properties, including high electro-activity, large specific surface areas …

[PDF][PDF] Research progress on presodiation strategies for high energy sodium-ion batteries

M Xu, M Liu, Z Yang, C Wu, J Qian - Acta Phys. Chim. Sin, 2022 - whxb.pku.edu.cn
Lithium-ion batteries (LIBs) have attracted considerable attention owing to their high energy
density and long cycle life. However, lithium resources have become scarcer with the rapid …

The cathode choice for commercialization of sodium‐ion batteries: layered transition metal oxides versus Prussian blue analogs

Q Liu, Z Hu, M Chen, C Zou, H Jin… - Advanced Functional …, 2020 - Wiley Online Library
With the unprecedentedly increasing demand for renewable and clean energy sources, the
sodium‐ion battery (SIB) is emerging as an alternative or complementary energy storage …

Boost sodium-ion batteries to commercialization: Strategies to enhance initial Coulombic efficiency of hard carbon anode

M Zhang, Y Li, F Wu, Y Bai, C Wu - Nano Energy, 2021 - Elsevier
Sodium-ion batteries (SIBs) are regarded as one of the most promising candidates for large-
scale energy storage system due to low cost and inexhaustible sodium reserves. The …

Progress and challenges of prelithiation technology for lithium‐ion battery

Z Huang, Z Deng, Y Zhong, M Xu, S Li, X Liu… - Carbon …, 2022 - Wiley Online Library
Prelithiation technology is widely considered a feasible route to raise the energy density and
elongate the cycle life of lithium‐ion batteries. The principle of prelithiation is to introduce …

From lithium‐ion to sodium‐ion batteries: advantages, challenges, and surprises

PK Nayak, L Yang, W Brehm… - Angewandte Chemie …, 2018 - Wiley Online Library
Mobile and stationary energy storage by rechargeable batteries is a topic of broad societal
and economical relevance. Lithium‐ion battery (LIB) technology is at the forefront of the …

Sodium-ion batteries: present and future

JY Hwang, ST Myung, YK Sun - Chemical Society Reviews, 2017 - pubs.rsc.org
Energy production and storage technologies have attracted a great deal of attention for day-
to-day applications. In recent decades, advances in lithium-ion battery (LIB) technology have …

Sodium‐ion batteries: from academic research to practical commercialization

J Deng, WB Luo, SL Chou, HK Liu… - Advanced Energy …, 2018 - Wiley Online Library
Sodium‐ion batteries (SIBs) have been considered as the most promising candidate for
large‐scale energy storage system owing to the economic efficiency resulting from abundant …

Promise and reality of post-lithium-ion batteries with high energy densities

JW Choi, D Aurbach - Nature reviews materials, 2016 - nature.com
Energy density is the main property of rechargeable batteries that has driven the entire
technology forward in past decades. Lithium-ion batteries (LIBs) now surpass other …