Molecular design of redox-active materials with higher solubility and greater redox potential windows is instrumental in enhancing the performance of redox flow batteries Here we propose a computational procedure for a systematic evaluation of organic redox-active species by combining machine learning, quantum-mechanical, and classical density functional theory calculations. 1,517 small quinone molecules were generated from the building blocks of benzoquinone, naphthoquinone, and anthraquinone with different substituent groups. The physics-based methods were used to predict HOMO-LUMO gaps and solvation free energies that account for the redox potential differences and aqueous solubility, respectively. The high-throughput calculations were a...
Alloxazines are a promising class of organic electroactive compounds for application in aqueous redo...
Quinones are produced in organisms and are utilized as electron transfer agents, pigments and in def...
Redox flow batteries (RFB) utilizing water-soluble organic redox couples are a new strategy for low-...
Molecular design of redox-active materials with higher solubility and greater redox potential window...
Molecular design of redox-active materials with higher solubility and greater redox potential window...
Molecular design of redox-active materials with higher solubility and greater redox potential window...
High-throughput computational screening (HTCS) is an effective tool to accelerate the discovery of a...
High-throughput computational screening (HTCS) is an effective tool to accelerate the discovery of a...
Inspired by the electron transfer properties of quinones in biological systems, we recently showed t...
An increasing number of electroactive compounds have recently been explored for their use in high-pe...
High-throughput computational screening (HTCS) is a powerful approach for the rational and time-effi...
Quinone-hydroquinone pairs have been proposed as biologically-inspired, low-cost redox couples for...
A high-throughput virtual screening (HTVS)-guided experimental study is applied for the large-scale ...
The quinone frameworks derived from thermophilic aerobic sulfolobus archaebacteria, caldariellaquino...
International audienceRedox-flow batteries are relevant to store energy from intermittent sources su...
Alloxazines are a promising class of organic electroactive compounds for application in aqueous redo...
Quinones are produced in organisms and are utilized as electron transfer agents, pigments and in def...
Redox flow batteries (RFB) utilizing water-soluble organic redox couples are a new strategy for low-...
Molecular design of redox-active materials with higher solubility and greater redox potential window...
Molecular design of redox-active materials with higher solubility and greater redox potential window...
Molecular design of redox-active materials with higher solubility and greater redox potential window...
High-throughput computational screening (HTCS) is an effective tool to accelerate the discovery of a...
High-throughput computational screening (HTCS) is an effective tool to accelerate the discovery of a...
Inspired by the electron transfer properties of quinones in biological systems, we recently showed t...
An increasing number of electroactive compounds have recently been explored for their use in high-pe...
High-throughput computational screening (HTCS) is a powerful approach for the rational and time-effi...
Quinone-hydroquinone pairs have been proposed as biologically-inspired, low-cost redox couples for...
A high-throughput virtual screening (HTVS)-guided experimental study is applied for the large-scale ...
The quinone frameworks derived from thermophilic aerobic sulfolobus archaebacteria, caldariellaquino...
International audienceRedox-flow batteries are relevant to store energy from intermittent sources su...
Alloxazines are a promising class of organic electroactive compounds for application in aqueous redo...
Quinones are produced in organisms and are utilized as electron transfer agents, pigments and in def...
Redox flow batteries (RFB) utilizing water-soluble organic redox couples are a new strategy for low-...