Organic batteries for a greener rechargeable world

J Kim, Y Kim, J Yoo, G Kwon, Y Ko, K Kang - Nature Reviews Materials, 2023 - nature.com
The emergence of electric mobility has placed high demands on lithium-ion batteries,
inevitably requiring a substantial consumption of transition-metal resources. The use of this …

Organosulfur materials for rechargeable batteries: Structure, mechanism, and application

P Sang, Q Chen, DY Wang, W Guo, Y Fu - Chemical Reviews, 2023 - ACS Publications
Lithium-ion batteries have received significant attention over the last decades due to the
wide application of portable electronics and increasing deployment of electric vehicles. In …

[HTML][HTML] A sustainable chitosan-zinc electrolyte for high-rate zinc-metal batteries

M Wu, Y Zhang, L Xu, C Yang, M Hong, M Cui… - Matter, 2022 - cell.com
Rechargeable aqueous Zn-metal battery is promising for grid energy storage needs, but its
application is limited by issues such as Zn dendrite formation. In this work, we demonstrate a …

Emerging organic electrodes for Na-ion and K-ion batteries

J Hu, Y Hong, M Guo, Y Hu, W Tang, S Xu, S Jia… - Energy Storage …, 2023 - Elsevier
The redox-active organic compounds are the suitable electrode materials for Li/Na/K-ion
batteries. Since organic solids are mainly made of organic building units through Van der …

Active materials for aqueous zinc ion batteries: synthesis, crystal structure, morphology, and electrochemistry

X Jia, C Liu, ZG Neale, J Yang, G Cao - Chemical Reviews, 2020 - ACS Publications
Aqueous zinc ion batteries (ZIBs) are truly promising contenders for the future large-scale
electrical energy storage applications due to their cost-effectiveness, environmental …

Prospects of organic electrode materials for practical lithium batteries

Y Lu, J Chen - Nature Reviews Chemistry, 2020 - nature.com
Organic materials have attracted much attention for their utility as lithium-battery electrodes
because their tunable structures can be sustainably prepared from abundant precursors in …

Opportunities and challenges for organic electrodes in electrochemical energy storage

P Poizot, J Gaubicher, S Renault, L Dubois… - Chemical …, 2020 - ACS Publications
As the world moves toward electromobility and a concomitant decarbonization of its
electrical supply, modern society is also entering a so-called fourth industrial revolution …

2021 roadmap for sodium-ion batteries

N Tapia-Ruiz, AR Armstrong, H Alptekin… - Journal of Physics …, 2021 - iopscience.iop.org
Increasing concerns regarding the sustainability of lithium sources, due to their limited
availability and consequent expected price increase, have raised awareness of the …

Two birds one stone: graphene assisted reaction kinetics and ionic conductivity in phthalocyanine‐based covalent organic framework anodes for lithium‐ion batteries

J Zhao, M Zhou, J Chen, L Wang, Q Zhang, S Zhong… - Small, 2023 - Wiley Online Library
This work reports a covalent organic framework composite structure (PMDA‐NiPc‐G),
incorporating multiple‐active carbonyls and graphene on the basis of the combination of …

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 **… - 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 …