Lithium-ion batteries: outlook on present, future, and hybridized technologies

T Kim, W Song, DY Son, LK Ono, Y Qi - Journal of materials chemistry …, 2019 - pubs.rsc.org
Lithium-ion batteries (LIBs) continue to draw vast attention as a promising energy storage
technology due to their high energy density, low self-discharge property, nearly zero …

Insights into the solvation chemistry in liquid electrolytes for lithium-based rechargeable batteries

P **ao, X Yun, Y Chen, X Guo, P Gao, G Zhou… - Chemical Society …, 2023 - pubs.rsc.org
Lithium-based rechargeable batteries have dominated the energy storage field and attracted
considerable research interest due to their excellent electrochemical performance. As …

Lithium–oxygen batteries and related systems: potential, status, and future

WJ Kwak, Rosy, D Sharon, C **a, H Kim… - Chemical …, 2020 - ACS Publications
The goal of limiting global warming to 1.5° C requires a drastic reduction in CO2 emissions
across many sectors of the world economy. Batteries are vital to this endeavor, whether used …

Aqueous zinc‐iodine batteries: from electrochemistry to energy storage mechanism

H Chen, X Li, K Fang, H Wang… - Advanced Energy …, 2023 - Wiley Online Library
As one of the most appealing energy storage technologies, aqueous zinc‐iodine batteries
still suffer severe problems such as low energy density, slow iodine conversion kinetics, and …

New concepts in electrolytes

M Li, C Wang, Z Chen, K Xu, J Lu - Chemical reviews, 2020 - ACS Publications
Over the past decades, Li-ion battery (LIB) has turned into one of the most important
advances in the history of technology due to its extensive and in-depth impact on our life. Its …

Application of ionic liquids to energy storage and conversion materials and devices

M Watanabe, ML Thomas, S Zhang, K Ueno… - Chemical …, 2017 - ACS Publications
Ionic liquids (ILs) are liquids consisting entirely of ions and can be further defined as molten
salts having melting points lower than 100° C. One of the most important research areas for …

Advances in understanding mechanisms underpinning lithium–air batteries

D Aurbach, BD McCloskey, LF Nazar, PG Bruce - Nature Energy, 2016 - nature.com
The rechargeable lithium–air battery has the highest theoretical specific energy of any
rechargeable battery and could transform energy storage if a practical device could be …

Sustainability and in situ monitoring in battery development

CP Grey, JM Tarascon - Nature materials, 2017 - nature.com
The development of improved rechargeable batteries represents a major technological
challenge for this new century, as batteries constitute the limiting components in the shift …

Current challenges and routes forward for nonaqueous lithium–air batteries

T Liu, JP Vivek, EW Zhao, J Lei, N Garcia-Araez… - Chemical …, 2020 - ACS Publications
Nonaqueous lithium–air batteries have garnered considerable research interest over the
past decade due to their extremely high theoretical energy densities and potentially low cost …

A metal–organic framework as a multifunctional ionic sieve membrane for long‐life aqueous zinc–iodide batteries

H Yang, Y Qiao, Z Chang, H Deng, P He… - Advanced …, 2020 - Wiley Online Library
The introduction of the redox couple of triiodide/iodide (I3−/I−) into aqueous rechargeable
zinc batteries is a promising energy‐storage resource owing to its safety and cost …