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Sadig Aghazada

@sadigaghazada.bsky.social
138 followers 109 following 14 posts

Asst. Prof. of Inorganic Chemistry at the University of Bern

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Reposted by Sadig Aghazada
Copéret Group @coperetgroup.bsky.social · 12/03/2026
47/49Ti NMR Crystallography enables to refine the speciation, distortion and distribution of Ti sites in Titanium Silicalite-1, a prominent catalyst for sustainable selective oxidation reactions doi.org/10.1002/anie...
doi.org
Speciation, Structural Refinement, and Distribution of Ti Sites in Titanium Silicalite‐1 From 47/49Ti NMR Crystallography at 28.2 Tesla
Titanium silicalite-1 (TS-1), used in industrial selective oxidation processes, depends on specific, yet still unresolved Ti sites, dispersed within the framework of an MFI-zeolite. Applying high fie....
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Reposted by Sadig Aghazada
Harder Research Group @harder-research.bsky.social · 03/03/2026
MOLECULAR ZINTL PHASES with tetra-anionic Si, Ge, Sn, Pb accessible using soluble form of Mg(0). Although all E(4-) anions are full valence-shell octets, they are highly reactive. Some are stable, some not. The Sn(-IV) complex is an 8e-reductant shorturl.at/InmD6 @natsynth.nature.com
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Reposted by Sadig Aghazada
Eva Hevia @evaheviagroup.bsky.social · 29/10/2025
Thrilled to share the work of @clarencetankl.bsky.social and @antorna.bsky.social on elevating #sodium mediated deprotonative #borylation to #catalytic regimes with an insightful #mechanistic study in collaboration with Max Garcia Melchor @pubs.acs.org @unibe.ch pubs.acs.org/doi/10.1021/...
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Reposted by Sadig Aghazada
Helvetica Chimica Acta @helvchimacta.bsky.social · 26/08/2025
ECAB member Sadig Aghazada @sadigaghazada.bsky.social favorite @helvchimacta.bsky.social article: Willot et al. further develop a creative route to a broad family of multidentate and chiral NHC-Phosphine ligand precursors through methylenephosphonium adducts of manganese. doi.org/10.1002/hlca...
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Sadig Aghazada @sadigaghazada.bsky.social · 21/08/2025
Continuing their tradition: another fantastic work from Liam @gliam96.bsky.social , Victor Mougel, and co-workers.
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Reposted by Sadig Aghazada
Eva Hevia @evaheviagroup.bsky.social · 29/07/2025
Excited to share the latest work from David Anderson just accepted @angewandtechemie.bsky.social on the structure and applications of #sodium #neopentyl a donor free #organosodium #reagent soluble in #hydrocarbon solvents @unibe.ch onlinelibrary.wiley.com/doi/epdf/10....
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EUCOMC2025 @eucomc2025.bsky.social · 07/07/2025
Inspirational #KeynoteLecture by #KarstenMeyer @fau.de on the redox diversity of #ironChemistry including the isolation of an Fe (VII) complex!
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Reposted by Sadig Aghazada
David Mills @millsgroupchem.bsky.social · 25/06/2025
Delighted to announce the publication of our work in @nature.com, in collaboration with @nfchilton.bsky.social's group, on a dysprosium compound with magnetic memory at 100 Kelvin. Congrats to all authors inc. @gemmagransbury.bsky.social, @jeffjefftyjeff.bsky.social www.nature.com/articles/s41...
nature.com
Soft magnetic hysteresis in a dysprosium amide–alkene complex up to 100 kelvin - Nature
A dysprosium amide–alkene complex shows soft magnetic hysteresis loops up to 100 kelvin, arising from the high charge density of the amide ligands and the structural role of the pendant alkene.
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Reposted by Sadig Aghazada
hohlochlab.bsky.social @hohlochlab.bsky.social · 23/06/2025
We are hiring a new PhD student. If you love working with f-elements and early transition metals, plus living in a beautiful mountain area, please apply. lfuonline.uibk.ac.at/public/karri...
lfuonline.uibk.ac.at
Studienorganisation
Chiffre CHEM-PHARM-15179
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Reposted by Sadig Aghazada
Dominik Munz @munzgroup.bsky.social · 26/04/2025
Oxidizing PPh3 generates a powerful reagent - Read more about this cool molecule @jacs.acspublications.org (previously @chemrxiv.bsky.social) Congrats to @fabiandankert.bsky.social, Simon, Sergi, Chandan & Sneha 🎊🍾 [Ph3P–PPh3]2+: Superacid, Superoxidant, Super Reagent? pubs.acs.org/doi/10.1021/...
pubs.acs.org
Hexaphenyl-1,2-Diphosphonium Dication [Ph3P–PPh3]2+: Superacid, Superoxidant, or Super Reagent?
The oxidation of triphenylphosphine by perfluorinated phenaziniumF aluminate in difluorobenzene affords hexaaryl-1,2-diphosphonium dialuminate 1. Dication 12+ is valence isoelectronic with elusive hex...
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Reposted by Sadig Aghazada
La Pierre Group @f-orbitals.bsky.social · 07/04/2025
We are excited to share praseodymium 5+! Finally in print! A new PR for Pr! rdcu.be/egHf6
rdcu.be
Praseodymium in the formal +5 oxidation state
Nature Chemistry - The most common oxidation state for lanthanide elements is +3, and, beyond cerium, examples of these elements exhibiting higher oxidation states remain scarce. Now, a molecular...
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Reposted by Sadig Aghazada
Harder Research Group @harder-research.bsky.social · 04/04/2025
Exploiting the similarity between Ca(II) and Yb(II), first Mg-lanthanide bonding has been realised. The peculiarities of this unique Mg-Yb bond are discussed. Mg(0)-Yb(II)? Mg(I)-Yb(I)? @JACS pubs.acs.org/doi/10.1021/...
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Sadig Aghazada @sadigaghazada.bsky.social · 14/03/2025
We have open PhD positions @unibern.bsky.social If you are interested in organometallic synthesis, transition metal and cluster chemistry, novel materials, and spectroscopy, this position is for you. Check the ad below and get in touch. #chemsky Please re-quote and spread the news.
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Reposted by Sadig Aghazada
Harder Research Group @harder-research.bsky.social · 17/02/2025
PREFORMED REDOX-ACTIVE INVERSE CROWNS: Finally out in @naturechemistry.bsky.social Highly selective reduction of N2O, epoxide, sulfur or O2. The ring can also be extended to a larger metalla-crown for stabilization of larger anions like N2O2(2-). Open access: shorturl.at/LZE6Y
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Sadig Aghazada @sadigaghazada.bsky.social · 13/02/2025
I am thrilled to join the University of Bern @unibern.bsky.social as a tt-asst. Prof. of Inorganic Chemistry this March. Very thankful to Karsten Meyer @fau.de, Christophe Copéret @coperetgroup.bsky.social, @munzgroup.bsky.social, and all friends and family for their continuous support.
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Reposted by Sadig Aghazada
Schneider Lab @schneider-lab.bsky.social · 29/01/2025
Our paper on triplet pnictinidenes (P, As, Sb) with transition metal substituents is out; congrats to Marc, Nils, Tarek and Rich and thanks to all that have contributed to get a comprehensive electronic structure picture @haenisch-group.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
Transient Triplet Metallopnictinidenes M–Pn (M = PdII, PtII; Pn = P, As, Sb): Characterization and Dimerization
Nitrenes (R–N) have been subject to a large body of experimental and theoretical studies. The fundamental reactivity of this important class of transient intermediates has been attributed to their electronic structures, particularly the accessibility of triplet vs singlet states. In contrast, electronic structure trends along the heavier pnictinidene analogues (R–Pn; Pn = P–Bi) are much less systematically explored. We here report the synthesis of a series of metallodipnictenes, {M–Pn═Pn–M} (M = PdII, PtII; Pn = P, As, Sb, Bi) and the characterization of the transient metallopnictinidene intermediates, {M–Pn} for Pn = P, As, Sb. Structural, spectroscopic, and computational analysis revealed spin triplet ground states for the metallopnictinidenes with characteristic electronic structure trends along the series. In comparison to the nitrene, the heavier pnictinidenes exhibit lower-lying ground state SOMOs and singlet excited states, thus suggesting increased electrophilic reactivity. Furthermore, the splitting of the triplet magnetic microstates is beyond the phosphinidenes {M–P} dominated by heavy pnictogen atom induced spin–orbit coupling.
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