Quinone-based flow battery
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An Aqueous All‐Quinone‐Based Redox Flow Battery
Apr 26, 2024 · Considering the sustainability of energy storage devices, an aqueous all-quinone redox flow battery employing biomass-derived quinones and neutral electrolytes is reported
An Aqueous All‐Quinone‐Based Redox Flow
Apr 26, 2024 · Considering the sustainability of energy storage devices, an aqueous all-quinone redox flow battery employing biomass-derived
Computational design of quinone electrolytes for redox flow batteries
Jan 6, 2023 · These quinone molecules can attain low solvation-free energy and high HOMO-LUMO gap simultaneously, and thus can be used as candidate materials for quinone-based
Quinones for Aqueous Organic Redox Flow
Jul 17, 2023 · The emergence of quinone-based aqueous organic redox flow batteries (AQRFBs) represents an exciting advancement in
Quino Energy
Oct 29, 2025 · Our Mission Practical, Affordable Grid Storage We create water-based flow batteries that store electrical energy in organic quinone molecules for commercial and grid
High-Performance Aqueous Organic Flow
May 10, 2016 · We have demonstrated the repeated cycling of a redox flow cell based on water-soluble organic redox couples (ORBAT) at high
Exploring Bio-inspired Quinone-Based Organic Redox Flow Batteries
Nov 10, 2016 · In contrast to recently reported quinone-based energy-storage systems, the Li-based non-aqueous flow battery combines the advantages of Li-ion batteries and flow
Alkaline quinone flow battery | Science
Sep 25, 2015 · Storage of photovoltaic and wind electricity in batteries could solve the mismatch problem between the intermittent supply of these renewable resources and variable demand.
Novel Quinone-Based Couples for Flow Batteries
Dec 30, 2024 · ABSTRACT Flow batteries are of interest for low-cost grid-scale electrical energy storage in the face of rising electricity production from intermittent renewables like wind and
A Water-Miscible Quinone Flow Battery with High
May 22, 2019 · A water-miscible anthraquinone with polyethylene glycol (PEG)-based solubilizing groups is introduced as the redox-active molecule in a negative electrolyte (negolyte) for
High-Performance Aqueous Organic Flow Battery with Quinone-Based
May 10, 2016 · We have demonstrated the repeated cycling of a redox flow cell based on water-soluble organic redox couples (ORBAT) at high voltage efficiency, coulombic efficiency and
A Water-Miscible Quinone Flow Battery with
May 22, 2019 · A water-miscible anthraquinone with polyethylene glycol (PEG)-based solubilizing groups is introduced as the redox-active
Computational design of quinone electrolytes
Jan 6, 2023 · These quinone molecules can attain low solvation-free energy and high HOMO-LUMO gap simultaneously, and thus can be used as
Quinones for Aqueous Organic Redox Flow Battery: A
Jul 17, 2023 · The emergence of quinone-based aqueous organic redox flow batteries (AQRFBs) represents an exciting advancement in electrochemical energy storage systems, particularly
Quinones for redox flow batteries
Oct 1, 2021 · Quinone chemistries Ideally, the redox flow battery utilizes quinones on both sides of the battery as shown in Figure 1. The RFB utilizes an oxidized version of one quinone and the
Technical FAQs 4
Do quinones have redox properties for organic flow batteries?
Here, we report a systematic study on the electrochemical characteristics of quinones for organic flow batteries with a combined experimental and computational method. The redox properties of quinones were found to be strongly dependent on the molecular aromaticity and their electronic structures.
Can quinone-based flow batteries be adapted to alkaline solutions?
We demonstrate that quinone-based flow batteries can be adapted to alkaline solutions, where hydroxylated anthraquinones are highly soluble and bromine can be replaced with the nontoxic ferricyanide ion (8, 9)—a food additive (10).
How does a redox flow battery work?
Ideally, the redox flow battery utilizes quinones on both sides of the battery as shown in Figure 1. The RFB utilizes an oxidized version of one quinone and the reduced version of a different quinone (hydroquinone) for the two electrolytes and charging/discharging ideally involves converting between these two forms.
Can redox-active organic molecules be used in alkaline flow batteries?
The battery operates efficiently with high power density near room temperature. These results demonstrate the stability and performance of redox-active organic molecules in alkaline flow batteries, potentially enabling cost-effective stationary storage of renewable energy.