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Rostislav Fedorov

@chemwedding.bsky.social
39 followers 11 following 2 posts
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Rostislav Fedorov @chemwedding.bsky.social · 16/07/2026
Together with @adrian-mirza.bsky.social and @kjablonka.com at @jablonkagroup.bsky.social, we built OpenClatura: an open-source tool for rule-based, inspectable structure2name conversion. Install it with: pip install openclatura GitHub: github.com/lamalab-org/... Preprint: doi.org/10.26434/che...
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Reposted by Rostislav Fedorov
Ganna (Anya) Gryn’ova 🇺🇦 @grynova.bsky.social · 26/09/2025
Very proud of newly minted Dr. Fedorov @chemwedding.bsky.social who successfully defended his PhD thesis on #machine_learning for organic electrode materials this week @hitsters.bsky.social @uniheidelberg.bsky.social
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Reposted by Rostislav Fedorov
Ganna (Anya) Gryn’ova 🇺🇦 @grynova.bsky.social · 26/02/2026
Excited to share ReSolved - a #GNN for predicting #redox potentials of organic molecules in diverse #solvents, by @chemwedding.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
Multi-Solvent Graph Neural Network for Reduction Potential Prediction Across the Chemical Space
Reduction potentials of redox-active molecules and materials are essential descriptors of their performance as catalysts, antioxidants, electrode materials, etc. For a given species, its practical applications often span a range of solvent environments, which profoundly impact its redox properties. In this work, we present a message passing graph neural network architecture with a Set Transformer readout trained on ca. 20,000 reduction potentials of chemically diverse closed- and open-shell organic redox-active molecules (the “ReSolved” data set), computed using a rigorously benchmarked density functional theory procedure. The predictor model affords high accuracy with mean absolute errors of ca. 0.2 eV and is uniquely able to generalize to previously unseen solvents. We couple this architecture with an evolutionary algorithm to inverse-design synthetically accessible candidate molecules with target reduction potentials for several battery-related practical applications.
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Reposted by Rostislav Fedorov
Ganna (Anya) Gryn’ova 🇺🇦 @grynova.bsky.social · 25/02/2026
DeCOFpose is an automatic #fragmentation tool for covalent organic #frameworks - whether you want to analyse, fragment, or reconstruct them! Great work with @chemwedding.bsky.social and @michelle-ernst.bsky.social pubs.rsc.org/en/content/a...
pubs.rsc.org
Fragment to framework: automatic fragmentation of covalent organic frameworks into building blocks for band gap analysis
Understanding structure–property relationships in ordered functional materials is essential for their rational design and optimisation. Fragment-based approaches relating materials’ properties to thos...
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Reposted by Rostislav Fedorov
Ganna (Anya) Gryn’ova 🇺🇦 @grynova.bsky.social · 17/04/2025
In our pre-Easter #JournalClub, @chemwedding.bsky.social discussed #uncertainty and #truth in #LLMs #machinelearning www.grynova-ccc.org/journal-club...
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Reposted by Rostislav Fedorov
Ganna (Anya) Gryn’ova 🇺🇦 @grynova.bsky.social · 21/11/2024
Today’s #JournalClub from @chemwedding.bsky.social discusses (questions?) the value of #equivalence in #neural_network architectures, feat. Works by @mmbronstein.bsky.social, Tess Smidt, Michele Ceriotti, and others. www.grynova-ccc.org/journal-club... #chemsky #ML
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