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Vera Krewald

@verakrewald.bsky.social
931 followers 267 following 14 posts

Quantum Chemistry at TU Darmstadt Interested in unpaired electrons and their shenanigans, especially in transition metal complexes, catalysis, electron transfer, magnetism and photochemistry

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Vera Krewald @verakrewald.bsky.social · 05/12/2024
Congratulations to Yannik Legscha for his efforts in spreading the word on iron and sustainable chemistry to the next generation! #chemsky
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Katja Heinze's research group University of Mainz @labheinze.bsky.social · 28/11/2024
Important #ChemSky aspect discussed in this study by my collegue Thomas Basché at Mainz university. We have seen enhancements in PL yield and PL lifetime by deuteration in the molecular #ruby [Cr(bpmp)2]3+ and other #chromium #near-infrared emitters as well (doi.org/10.1021/jacs...).
doi.org
Strongly Red-Emissive Molecular Ruby [Cr(bpmp)2]3+ Surpasses [Ru(bpy)3]2+
Gaining chemical control over the thermodynamics and kinetics of photoexcited states is paramount to an efficient and sustainable utilization of photoactive transition metal complexes in a plethora of technologies. In contrast to energies of charge transfer states described by spatially separated orbitals, the energies of spin-flip states cannot straightforwardly be predicted as Pauli repulsion and the nephelauxetic effect play key roles. Guided by multireference quantum chemical calculations, we report a novel highly luminescent spin-flip emitter with a quantum chemically predicted blue-shifted luminescence. The spin-flip emission band of the chromium complex [Cr(bpmp)2]3+ (bpmp = 2,6-bis(2-pyridylmethyl)pyridine) shifted to higher energy from ca. 780 nm observed for known highly emissive chromium(III) complexes to 709 nm. The photoluminescence quantum yields climb to 20%, and very long excited state lifetimes in the millisecond range are achieved at room temperature in acidic D2O solution. Partial ligand deuteration increases the quantum yield to 25%. The high excited state energy of [Cr(bpmp)2]3+ and its facile reduction to [Cr(bpmp)2]2+ result in a high excited state redox potential. The ligand’s methylene bridge acts as a Brønsted acid quenching the luminescence at high pH. Combined with a pH-insensitive chromium(III) emitter, ratiometric optical pH sensing is achieved with single wavelength excitation. The photophysical and ground state properties (quantum yield, lifetime, redox potential, and acid/base) of this spin-flip complex incorporating an earth-abundant metal surpass those of the classical precious metal [Ru(α-diimine)3]2+ charge transfer complexes, which are commonly employed in optical sensing and photo(redox) catalysis, underlining the bright future of these molecular ruby analogues.
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CRC 1487 "Iron, upgraded!" @iron-upgraded.bsky.social · 28/11/2024
We are happy that you can now also reach us on now BlueSky (@iron-upgraded.bsky.social) and LinkedIn (Iron, upgraded!) in addition to our Instagram account. @verakrewald.bsky.social
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Virtual Winter School on Computational Chemistry @vwscc.bsky.social · 21/11/2024
📅 Join us from January 27th to 31st, 2025, for the 11th VWSCC edition with a stellar lineup of speakers and workshops by the ORCA team 🐋 and the Grimme Lab with xTB! 🧪 🎤 Participate in the SFP session, deliver a flash talk, and earn a certificate! 🏆 🔗 Register now: winterschool.cc #CompChem #ChemSky
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Henrique C. S. Junior @hcsj.bsky.social · 20/11/2024
The Virtual Winter School on Computational Chemistry @vwscc.bsky.social has now joined #BlueSky! #compchem #chemsky
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Mario Barbatti @mbarbatti.bsky.social · 16/11/2024
A starter pack on the molecular theoretical quantum world. #compchem #molphys #theochem 🧪 go.bsky.app/UGFPoE2
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Johannes Kästner @johanneskaestner.bsky.social · 29/04/2024
Thrilled to host Vera Krewald and Reinhold Fink today and looking forward to their talks at our institute (at Uni Stuttgart). A high dose of theoretical chemistry 😉 💻⚗️.
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Vera Krewald @verakrewald.bsky.social · 10/01/2024
Delighted to share this collaborative work with Uli Hintermair, Mark Muldoon, Qun Cao & Martin Diefenbach on the co-catalytic effect of water in aerobic olefin epoxidation with a O=Ru=O porphyrin catalyst #ChemSky #ChemSci pubs.rsc.org/en/content/a... #compchem #theochem #inorgchem #catalysis
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Vera Krewald @verakrewald.bsky.social · 30/10/2023
I'm delighted to share our #compchem analysis of the excited state Creutz-Taube ion! We study the first 10 ps with excited state dynamics to describe how the photoinduced mixed valent state forms, and discuss vibrational coherences. Amazing work by Adam Šrut! pubs.acs.org/doi/10.1021/... #chemsky
pubs.acs.org
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Vera Krewald @verakrewald.bsky.social · 13/10/2023
Hello #chemsky and world, what are your favourite resources to learn python or julia? 🧪 I'm looking for guides that could be used in a self-guided group setting or by individual learners. If they cater to chemists in terms of the examples that's a bonus - open to any suggestions! #ITeachChem
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Frederico Martins @fredfmartins.bsky.social · 13/10/2023
Cooperative dinitrogen activation w/ @verakrewald.bsky.social now available for Early View @EurJIC! 💥 #chemsky #compchem 👇 doi.org/10.1002/ejic...
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Vera Krewald @verakrewald.bsky.social · 10/10/2023
Happy to share a recent paper with fredfmartins.bsky.social on push pull effects in dinitrogen activation with Lewis acids, and how to analyse them from an MO perspective #compchem #quantumchem #chemsky chemistry-europe.onlinelibrary.wiley.com/doi/10.1002/...
chemistry-europe.onlinelibrary.wiley.com
Cooperative Dinitrogen Activation: Identifying the Push‐Pull Effect of Transition Metals and Lewis...
The sustainable fixation of atmospheric N2 and its conversion into industrially relevant molecules is one of the major current challenges in chemistry. Besides nitrogen activation with transition met....
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Marcel Swart @marcelswart.bsky.social · 09/10/2023
Job done
Supervisor and new young doctor Fred Martins
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Marcel Swart @marcelswart.bsky.social · 09/10/2023
Fred Martins responding to questions from the committee during his PhD defense
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Vera Krewald @verakrewald.bsky.social · 27/09/2023
In case you were wondering how to quantify the nuclear configuration axis in the Marcus-Hush model, have a look here: pubs.rsc.org/en/content/a... We propose an ensemble approach with a subsequent Marcus model fit to evaluate the electron transfer dimension in mixed valent systems 🧪 ChemSky
pubs.rsc.org
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Maren Podewitz @podewitzlab.bsky.social · 15/09/2023
Ever wondered how to generate conformers in explicit solvent? Check out our python tool! pubs.acs.org/doi/10.1021/...
pubs.acs.org
PyConSolv: A Python Package for Conformer Generation of (Metal-Containing) Systems in Explicit Solve...
We introduce PyConSolv, a freely available Python package that automates the generation of conformers of metal- and nonmetal-containing complexes in explicit solvent, through classical molecular dynam...
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