Recent progress in organic electrodes for Li and Na rechargeable batteries

S Lee, G Kwon, K Ku, K Yoon, SK Jung… - Advanced …, 2018 - Wiley Online Library
Organic rechargeable batteries, which use organics as electrodes, are excellent candidates
for next‐generation energy storage systems because they offer design flexibility due to the …

Redox‐flow batteries: from metals to organic redox‐active materials

J Winsberg, T Hagemann, T Janoschka… - Angewandte Chemie …, 2017 - Wiley Online Library
Research on redox‐flow batteries (RFBs) is currently experiencing a significant upturn,
stimulated by the growing need to store increasing quantities of sustainably generated …

A perspective on organic electrode materials and technologies for next generation batteries

B Esser, F Dolhem, M Becuwe, P Poizot, A Vlad… - Journal of Power …, 2021 - Elsevier
In this perspective article, we review some of the most recent advances in the emerging field
of organic materials as the electroactive component in solid electrodes for batteries. These …

Material design of aqueous redox flow batteries: fundamental challenges and mitigation strategies

Z Li, YC Lu - Advanced Materials, 2020 - Wiley Online Library
Redox flow batteries (RFBs) are critical enablers for next‐generation grid‐scale energy‐
storage systems, due to their scalability and flexibility in decoupling power and energy …

The rise of organic electrode materials for energy storage

TB Schon, BT McAllister, PF Li… - Chemical Society Reviews, 2016 - pubs.rsc.org
Organic electrode materials are very attractive for electrochemical energy storage devices
because they can be flexible, lightweight, low cost, benign to the environment, and used in a …

Molecular engineering of organic electroactive materials for redox flow batteries

Y Ding, C Zhang, L Zhang, Y Zhou, G Yu - Chemical Society Reviews, 2018 - pubs.rsc.org
With high scalability and independent control over energy and power, redox flow batteries
(RFBs) stand out as an important large-scale energy storage system. However, the …

Site-selective direct C–H pyridylation of unactivated alkanes by triplet excited anthraquinone

W Lee, S Jung, M Kim, S Hong - Journal of the American Chemical …, 2021 - ACS Publications
Site-selective C–H functionalization in chemical feedstocks is a challenging and useful
reaction in the broad field of chemical research. Here, we report a modular photochemical …

Molecular engineering with organic carbonyl electrode materials for advanced stationary and redox flow rechargeable batteries

Q Zhao, Z Zhu, J Chen - Advanced Materials, 2017 - Wiley Online Library
Organic carbonyl electrode materials that have the advantages of high capacity, low cost
and being environmentally friendly, are regarded as powerful candidates for next …

Redox-active polymers: The magic key towards energy storage–a polymer design guideline progress in polymer science

P Rohland, E Schröter, O Nolte, GR Newkome… - Progress in Polymer …, 2022 - Elsevier
Renewable organic batteries represent a valuable option to store sustainably generated
energy and can play a major role in phasing out current carbon-based energy production …

Computational design of molecules for an all-quinone redox flow battery

S Er, C Suh, MP Marshak, A Aspuru-Guzik - Chemical science, 2015 - pubs.rsc.org
Inspired by the electron transfer properties of quinones in biological systems, we recently
showed that quinones are also very promising electroactive materials for stationary energy …