Rechargeable batteries for grid scale energy storage

Z Zhu, T Jiang, M Ali, Y Meng, Y **, Y Cui… - Chemical …, 2022 - ACS Publications
Ever-increasing global energy consumption has driven the development of renewable
energy technologies to reduce greenhouse gas emissions and air pollution. Battery energy …

Recent developments in organic redox flow batteries: A critical review

P Leung, AA Shah, L Sanz, C Flox, JR Morante… - Journal of Power …, 2017 - Elsevier
Redox flow batteries (RFBs) have emerged as prime candidates for energy storage on the
medium and large scales, particularly at the grid scale. The demand for versatile energy …

Redox species of redox flow batteries: A review

F Pan, Q Wang - Molecules, 2015 - mdpi.com
Due to the capricious nature of renewable energy resources, such as wind and solar, large-
scale energy storage devices are increasingly required to make the best use of the …

Studies of iron-ligand complexes for an all-iron flow battery application

KL Hawthorne, JS Wainright… - Journal of The …, 2014 - iopscience.iop.org
Seven organic ligands were investigated for use to coordinate reactive ions in the positive
electrolyte of an all-iron flow battery. Exchange current densities, diffusion coefficients, and …

[HTML][HTML] Chelated chromium electrolyte enabling high-voltage aqueous flow batteries

BH Robb, JM Farrell, MP Marshak - Joule, 2019 - cell.com
Widespread adoption of renewable energy is limited by the lack of low-cost long-duration
energy storage. Redox flow batteries are an attractive option to provide this type of storage …

All iron aqueous redox flow batteries using organometallic complexes consisting of iron and 3-[bis (2-hydroxyethyl) amino]-2-hydroxypropanesulfonic acid ligand and …

M Shin, C Noh, Y Chung, Y Kwon - Chemical Engineering Journal, 2020 - Elsevier
The Organometallic complex consisting of iron and 3-[bis (2-hydroxyethyl) amino]-2-
hydroxypropanesulfonic acid (DIPSO) ligand (Fe (DIPSO)) is newly suggested as negative …

Adsorption of heavy metal ions by iminodiacetic acid functionalized D301 resin: Kinetics, isotherms and thermodynamics

FQ An, RY Wu, M Li, TP Hu, JF Gao, ZG Yuan - Reactive and Functional …, 2017 - Elsevier
High adsorption capacity, fast adsorption rate, easy regeneration and good reusability were
very important for qualified adsorbents used in removing toxic heavy metals from …

Aqueous redox flow battery using iron 2, 2‐bis (hydroxymethyl)‐2, 2′, 2′‐nitrilotriethanol complex and ferrocyanide as newly developed redox couple

M Shin, S Oh, H Jeong, C Noh, Y Chung… - … Journal of Energy …, 2022 - Wiley Online Library
An all‐iron aqueous redox flow battery using iron (Fe) 2, 2‐bis (hydroxymethyl)‐2, 2′, 2′‐
nitrilotriethanol (BIS‐TRIS) complex (Fe (BIS‐TRIS)) and Ferrocyanide (Fe [CN] 6) as redox …

The development of Zn–Ce hybrid redox flow batteries for energy storage and their continuing challenges

FC Walsh, C Ponce de Léon, L Berlouis… - …, 2015 - Wiley Online Library
Abstract The Zn–Ce flow battery is a recently introduced hybrid redox flow battery (RFB) but
has been extensively studied in the laboratory and at the industrial pilot scale since its …

Excellent stability and electrochemical performance of the electrolyte with indium ion for iron–chromium flow battery

S Wang, Z Xu, X Wu, H Zhao, J Zhao, J Liu, C Yan… - Electrochimica …, 2021 - Elsevier
Iron–chromium flow battery (ICFB) is one of the most promising technologies for energy
storage systems, while the parasitic hydrogen evolution reaction (HER) during the negative …