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Harder Research Group

@harder-research.bsky.social
479 followers 205 following 47 posts

Organometallic Main Group Metal Chemistry, mainly s- and p-block but nowadays also some d- and f-block. @FAU Erlangen

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Philipp Dabringhaus @pdabringhaus.bsky.social · 06/08/2026
Excited to share our first paper, just published in @angewandtechemie.bsky.social! 🥳 A first in Aluminum(I) chemistry!🔥 Charlotte reports the trapping of Aluminum(I) fragments within an ambiphilic ligand framework. (1/3) onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com
Ambiphilic Ligand Stabilization of Aluminum(I) Fragments: Halides, Cations, and a Hydride
Stabilization of elusive aluminum(I) halides in the framework of an ambiphilic ligand is reported. The unique bonding situation at the trigonal-bipyramidal aluminum center is analyzed, and the coordi....
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Eva Hevia @evaheviagroup.bsky.social · 28/05/2026
Excited to share Sophia’s and Luca’s work assessing the #synthesis #structure and #reactivity of a homologous series of #AlkaliMetal #silyl complexes! Just out in #Organometallics @pubs.acs.org @unibe.ch pubs.acs.org/doi/abs/10.1...
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Andreu Tortajada Navarro @antorna.bsky.social · 13/07/2026
Looking for a chemistry summer read? Ever wondered how superbases work? Our most recent article-review (with @evaheviagroup.bsky.social ) breaks down exactly how adding alkali-metal alkoxides to main-group reagents can change reactivity and selectivity in organic synthesis. doi.org/10.1039/d6cs...
TOC of the article: alkali-metal alkoxide deliver a balance between high reactivity and selectivity of organometallic bases and reagents.
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Kyle Pearce @kylegpearce.bsky.social · 16/06/2026
The heaviest Ae-Alumanyl (so far) just out in @daltontrans.rsc.org , check it out! pubs.rsc.org/en/content/a...
pubs.rsc.org
A Strontium Alumanyl
The strontium alumanyl, [(BDI)SrAl(SiNDipp)], has been prepared from [(BDI)Sr(BPh4)] and [(SiNDipp)AlK]2. Like its previously described calcium analogue, sructural and computational analysis indicates...
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Robert Mulvey @remglasgow.bsky.social · 27/03/2026
Continuing our campaign to study all the alkali metals in organometallic chemistry. Why don't you try this in your own studies? Our friends in Bern @evaheviagroup.bsky.social are! Comparisons and Contrasts in a Complete Set of Alkali Metal Cumyl Structures | Inorg Chem pubs.acs.org/doi/10.1021/...
pubs.acs.org
Comparisons and Contrasts in a Complete Set of Alkali Metal Cumyl Structures
Alkali-metal benzyl complexes derived from toluene are known to vary their metal–ligand coordination mode as a function of the alkali-metal, with the metal transitioning from a typical σ bond to the anionic CH2 for lithium toward an interaction with the delocalized pi system of the aromatic ring as the metal gets larger and softer. Here, by switching to cumene, we report the charge-localizing effect of replacing the hydrogen atoms at the formally carbanionic carbon CH2 with electron-donating methyl groups in C(Me)2. NMR spectroscopic studies reveal competitive ring-metalation occurs, at the meta and para positions, alongside α-metalation on using an alkyl lithium base, with the meta- and α-isomers crystallographically characterized as a solvated dimer and monomer, respectively. Using Lochmann-Schlosser type base pairs to access the heavier alkali-metal complexes unveils only α-metalation. The presence of the methyl groups limits the variation in metal–ligand bonding, their electron-donating properties forcing the delocalization of the negative charge into the ring resulting in M-Ph interactions and sp2 hybridization at the formally deprotonated α-carbon regardless of the metal used. Considerable variation in aggregation state is observed with monomeric (Na), polymeric (K, Cs) and tetrameric (Rb) motifs identified in the solid-state.
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Robert Mulvey @remglasgow.bsky.social · 05/02/2026
Thrilled to co-author this perspective article with Eva and David. Think we are only at the tip of the iceberg on what is possible with these heavier alkali metals.
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Nature Synthesis @natsynth.nature.com · 03/03/2026
Now online and open access: Article by Sjoerd Harder & co-workers @harder-research.bsky.social Molecular low-oxidation-state chemistry with tetra-anionic group 14 elements www.nature.com/articles/s44... #Chemsky
nature.com
Molecular low-oxidation-state chemistry with tetra-anionic group 14 elements - Nature Synthesis
Using a hydrocarbon-soluble Mg0 complex, the heavier tetrel elements silicon, germanium, tin and lead are reduced to their ultimate negative oxidation state −IV. Despite fulfilling the octet rule, tet...
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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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Sc·EYE·nce @sc-eye-nce.bsky.social · 23/02/2026
More about: ⌬ This article: chemrxiv.org/doi/full/10.... ⌬ This illustration: sceyence.artstation.com/projects/Nqd... ⌬ Sc·EYE·nce: linktr.ee/sc.eye.nce
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Harder Research Group @harder-research.bsky.social · 23/02/2026
I must admit, I never heard of Sc.EYE.nce but the picture is great - and yes, we also think the research is beautiful! Thanks Benjamin 👍
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Clare Bakewell @bakewellgroup.bsky.social · 17/02/2026
Matt, Imogen and Mickey’s paper detailing the synthesis and reactivity of the first neutral Al(I) trimer is out now in @natcomms.nature.com! Check it out here along with @mattdv-t.bsky.social’s ‘behind the paper’ article!
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Harder Research Group @harder-research.bsky.social · 18/02/2026
Last week: homogeneous redox-catalysis with Al(I)-Al(III) (Leo Liu Lab) Now: heterogeneous alkene hydrogenation with Al(0), earth’s most abundant metal. Observations and calculations point to reactivity at the metal surface. Preprint: shorturl.at/I9R0B Main group power 👍
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Oliver Townrow @townrowresearch.bsky.social · 04/02/2026
Great to see this out! @fabiandankert.bsky.social and I summarise some of our favourite papers in main group chemistry over the last year gdch.app/article/haup...
gdch.app
Hauptgruppen‐ und Molekülchemie
Im Jahr 2025 waren aller guten Dinge der Hauptgruppenchemie drei: ein dreifach geladenes Triborattrianion, ein Molekül mit linearer Al3-Einheit, das dritte Erdalkalimetall, das Stickstoff bindet, ein ...
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Fabian Dankert @fabiandankert.bsky.social · 04/02/2026
@townrowresearch.bsky.social and I summarized some recent developments in molecular main-group chemistry. A fun project with many beautiful new discoveries last year! 👨‍🔬👩‍🔬 The annual "Trendbericht" can i.e. be read here: gdch.app/article/haup...
gdch.app
Hauptgruppen‐ und Molekülchemie
Im Jahr 2025 waren aller guten Dinge der Hauptgruppenchemie drei: ein dreifach geladenes Triborattrianion, ein Molekül mit linearer Al3-Einheit, das dritte Erdalkalimetall, das Stickstoff bindet, ein ...
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Eva Hevia @evaheviagroup.bsky.social · 04/02/2026
While traditionally used as stoichiometric reagents, #HeavierAlkaliMetalAmides have emerged as versatile #catalysts find out more in this #perspective with #DavidSancehzRoa @pubs.acs.org in collaboration with @remglasgow.bsky.social @unistrathclyde.bsky.social pubs.acs.org/doi/10.1021/...
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Felix Krämer @felixkraemer.bsky.social · 20/01/2026
Ceasium Strikes again! 🚀🚀 Now published in @angewandtechemie.bsky.social with @remglasgow.bsky.social and Thomas Horsley Downie! onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com
Boosting the Nucleophilicity of the Diphenylphosphide Anion with Crown Ether Supported Heavy Alkali Metals to Facilitate Highly Efficient Catalytic Alkene Isomerisation
Here, we report a breakthrough study in catalytic alkene isomerisation using crown ether-supported alkali metal phosphides in which the activity increases sequentially and significantly as Group One ...
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Harder Research Group @harder-research.bsky.social · 16/01/2026
FINALLY a complex of type LMg-CaL! This formally Mg(0)-Ca(II) complex shows a very long Mg-Ca bond with Mg(-)/Ca(+) polarization and is quite reactive! Our first 2026 paper is "In dear memory of Herbert Roesky" shorturl.at/tvi0C
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Harder Research Group @harder-research.bsky.social · 27/11/2025
QUESTION TO THE COMMUNITY: Since COVID it is very difficult to get GOOD (STRONG) glovebox gloves. And they are very expensive! Any tips where to get normally priced good gloves? You can also direct-mail me: sjoerd.harder@fau.de Thanks for your advice!
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Hering-Junghans Lab @hering-lab.bsky.social · 26/11/2025
Happy to see this fun project with @kretschmerlab.bsky.social out. Two gallium centers in close proximity led to some unexpected outcomes. Thanks to everyone involved and congrats to the team!
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Harder Research Group @harder-research.bsky.social · 07/11/2025
Fantastic! Good news for Bonn and for Florian. I wish you a happy and fruitful future 👍
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Warren Piers @wpiers.bsky.social · 27/10/2025
Rapid Intermolecular C–H Activation of Aromatic Substrates at a Cationic, Electrophilic Molybdenum(VI) Nitrido Complex: Mechanistic Nuance in C–H Amination | Journal of the American Chemical Society pubs.acs.org/doi/full/10.... Very pleased this work is out in JACS. Congrats Dr. Almquist!
pubs.acs.org
Rapid Intermolecular C–H Activation of Aromatic Substrates at a Cationic, Electrophilic Molybdenum(VI) Nitrido Complex: Mechanistic Nuance in C–H Amination
When the cationic, octahedral terminal nitrido complex of Mo(VI) supported by a diborate pentadentate ligand is generated in the absence of trapping nucleophiles, it activates the C(sp2)–H bonds of si...
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Harder Research Group @harder-research.bsky.social · 17/10/2025
TIRE CHANGE: First Mg(I) complex with a Cp* ligand enables facile ligand exchange. Reaction with RONa gives (BDI)Mg-MgOR and Cp*Na. This paves the way for syntheses of many new asymmetric Mg(I) complexes. @angew_chem onlinelibrary.wiley.com/doi/epdf/10....
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Harder Research Group @harder-research.bsky.social · 13/10/2025
Great cooperation with @KretschmerLab.bsky.social who took the lead. Happy to see that old work from my time in Essen is now published! t.co/gvpPNdCk3i
t.co
https://pubs.rsc.org/en/content/articlelanding/2025/dt/d5dt01934f
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Harder Research Group @harder-research.bsky.social · 08/10/2025
REDOX-REACTIVITY of Yb and Sm inverse sandwich benzene complexes. An interesting observation is that, depending on substrate, benzene(4-) can reduce Sm(III) to Sm(II). doi.org/10.1002/chem...
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AK Roesky @akroesky.bsky.social · 29/09/2025
Hey #ChemSky, need a read to start of the week? How about our latest #OpenAccess research article on ”Silicon-Based Azo Compound-Mediated CO Activation and N2 Release“ out now in @angewandtechemie.bsky.social: doi.org/10.1002/anie...
doi.org
Silicon‐Based Azo Compound‐Mediated CO Activation and N2 Release
A rare silicon(IV)-based azo compound featuring a Si─N═N─Si linkage was synthesized via the direct reaction of an organoazide with a silaiminyl–silylene precursor. This compound undergoes an unusual ...
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wolflab.bsky.social @wolflab.bsky.social · 16/09/2025
Check out our latest publication: A Highly Reduced Magnesium Dicobalt Complex for the Hydrogenation of Tri- and Tetra-Substituted Alkenes | Organometallics pubs.acs.org/doi/10.1021/...
pubs.acs.org
A Highly Reduced Magnesium Dicobalt Complex for the Hydrogenation of Tri- and Tetra-Substituted Alkenes
The reaction of [K(thf)0.33][Co(η4-cod)2] (E; cod = 1,5-cyclooctadiene) with 0.5 equiv of MgCl2 led to the isolation of the magnesium dicobalt complex Mg[Co(η4-cod)2]2 (1). Complex 1 forms a tight ionic complex in the solid state and in toluene solution due to electrostatic interactions between the Mg2+ cation and the [Co(η4-cod)2]− anions. The complex is a successful precatalyst for the hydrogenation of sterically challenging tri- and tetra-substituted alkenes, surpassing the catalytic capabilities of related alkali metal and β-diketiminate magnesium complexes.
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Marina Uzelac @marinauzelac.bsky.social · 05/09/2025
Ending the week on a high! Check out our comparison of manganate and magnesiate now published in ChemComm! Great team effort @bathchem.bsky.social with @tobiaskramer.bsky.social in understanding these elusive bimetallics!
pubs.rsc.org
A direct comparison of lithium tetra(n-butyl) manganate(II) and magnesiate: structural insights and catalytic hydroamination of styrenes
Previous studies have hinted at the similarities of Mn(II) and Mg alkyl complexes. Advancing this field, here we present a comparative study of tetra(n-butyl) lithium manganate(II) and magnesiate. Com...
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Harder Research Group @harder-research.bsky.social · 11/09/2025
Cesium showing its tricks again! Great stuff 👍
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Harder Research Group @harder-research.bsky.social · 05/09/2025
CAPTURING CHALCOGENIDES: A soluble Mg(0) metal crown complex reduces and captures chalcogenes. Large anions Se(2-) and Te(2-) need ring enlargement. Highlight: a first molecular s-block metal telluride complex with nearly planar pentacoordinated Te(2-). shorturl.at/n4TUm
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Harder Research Group @harder-research.bsky.social · 04/09/2025
THIS CHALLENGING SYNTHESIS completes the (BDI)Ae-(benzene)-Ae(BDI) series (Ae = Mg, Ca, Sr, Ba) with Ba. We show trends in stability, structure, bonding and reactivity. Reacting like (BDI)Ba-Ba(BDI) this is the first Ba(I) synthon. shorturl.at/ZdToA @chemicalscience.rsc.org
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Harder Research Group @harder-research.bsky.social · 02/09/2025
P4 REDUCTION generally results in multi-nuclear Zintl anions: P8(2-), P4(2-) or P7(3-). Reaction with a soluble Mg(0) complex gave full reduction to P(3-). Latter anion serves as a triple base, a three-fold nucleophile or 3e-reducing agent. onlinelibrary.wiley.com/doi/epdf/10.10
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Josef Boronski @josefboronski.bsky.social · 11/08/2025
Liam Griffin and I have reviewed recent advances in the heterometallic bonding chemistry of the alkaline earth metals @daltontrans.rsc.org. It was fun to put this together, and we hope it's useful! pubs.rsc.org/en/content/a...
pubs.rsc.org
Alkaline earth metals: heterometallic bonding
The alkaline earth metals are notorious for their tendency to form ionic compounds of their dications. In recent years, however, chemists have found ways to kinetically skirt around the edges of these...
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Harder Research Group @harder-research.bsky.social · 10/08/2025
Cool👍
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Kyle Pearce @kylegpearce.bsky.social · 02/08/2025
Excited to see this work published today in @jacs.acspublications.org , fun chemistry and a real group effort here by @clairemcmullin.bsky.social , @moraleschem.bsky.social , Mary and big Mike! (@bathchem.bsky.social) pubs.acs.org/doi/10.1021/...
pubs.acs.org
Arene Activation by Calcium Hydride/Zinc Amide Equilibration
The β-diketiminato calcium hydride, [(BDI)CaH]2 (BDI = HC{(Me)CNDipp}2, where Dipp = 2,6-i-Pr2C6H3), reacts with [Zn{N(SiMe3)2}2] and [Zn(TMP)2] (TMP = 2,2,6,6-tetramethylpiperidide) to provide labile...
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Joe Sperling @jsperling91.bsky.social · 25/07/2025
@hbwineinger.bsky.social wrote this review for those interested in low valent f elements #fblockrocks www.sciencedirect.com/science/arti...
sciencedirect.com
Molecular complexes of low-valent f-elements from lanthanum to californium
This review outlines the structure and chemistry of divalent lanthanides and actinides in small molecule systems, focusing on the less accessible diva…
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Dalton Transactions @daltontrans.rsc.org · 13/03/2025
🔓Read this #OpenAccess work by @coles-lab.bsky.social, @fultonro.bsky.social, Zoë Turner, Dermot O'Hare & co on heavier alkaline earth and heterobimetallic s-block “ate” complexes supported by di(amido)siloxane ligand👀 pubs.rsc.org/en/content/a... 📍 @ox.ac.uk, @vicuniwgtn.bsky.social #Chemsky 🧪
pubs.rsc.org
Heavier alkaline earth and heterobimetallic s-block “ate” complexes of a di(amido)siloxane ligand: solid-state structure and dynamic solution-phase behaviour
The diverse solid-state structures and solution-phase dynamics of both neutral and heterometallic s-block “ate” complexes of the heavier alkaline earth metals (Ae; Ca–Ba) supported by a chelating and…
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Martyn Coles @coles-lab.bsky.social · 28/04/2025
Double win and nice to know our research is of interest! Dedicated to the students and collaborators involved in all the hard work. #TopViewedArticle
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Martyn Coles @coles-lab.bsky.social · 21/07/2025
C–C Bond Formation at an Aluminacyclopropane | Organometallics (pubs.acs.org/doi/10.1021/...) Published as part of Organometallics special issue “Organometallic Chemistry Beyond the Transition Metals: Fundamentals and Applications of the P-Block”
pubs.acs.org
C–C Bond Formation at an Aluminacyclopropane
The reactivity of the aluminacyclopropane compound K[Al(NON)(η2-C2H4)] (NON = κN,N’-[O(SiMe2NDipp)2]2–; Dipp = 2,6-iPr2C6H3) toward isocyanides R–NC (R = Cy, Ad, tBu; Cy = cyclohexyl, Ad = 1-adamantyl...
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EUCOMC2025 @eucomc2025.bsky.social · 09/07/2025
Day 4 at #eucomc2025 starts with a feast on #alkalimetalchemistry and the unique perspectives that #Cs offers in catalysis with first #plenary speaker @remglasgow.bsky.social @unistrathclyde.bsky.social #group1metals #theheavierthebetter
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Harder Research Group @harder-research.bsky.social · 08/07/2025
Today we had Georgii Nikonov visiting. Thx for the lecture and joining us on a Franco Ian-Dutch-Belgian beer road trip🍺🍺🍺
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Jiaxiang Chu @jiaxiangchu.bsky.social · 02/07/2025
Our work on the room-temperature ring-opening of benzene is now published in JACS. Great teamwork and thanks for the kind comments from the reviewers! pubs.acs.org/doi/10.1021/...
pubs.acs.org
Room Temperature Ring Opening of Benzene by Four-Electron Reduction and Carbonylation
Cleaving a benzene ring under mild conditions requires disrupting its aromaticity, which is a significant challenge in modern chemistry. Although the generation of cyclic products from cleaving benzen...
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Harder Research Group @harder-research.bsky.social · 04/07/2025
A Ca(I) synthon with bridging N2 is key to the synthesis of homometallic Ca peroxide and oxide complexes. In solution, the Ca oxide complex decomposes even at -80 C. It can only be prepared in the solid state. @ChemCommun @RoySocChem shorturl.at/AUoWM
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David Mills @millsgroupchem.bsky.social · 02/07/2025
Thanks very much to Mason Wakley from @chemistryworld.com for this really nice write-up from our latest paper. 🙏🏻
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FAU Faculty of Sciences @nat.fau.de · 17/06/2025
Zwei ERC Advanced Grants für Forschende der Naturwissenschaftlichen Fakultät! Prof. Dr. Maria Chekhova (Physik) und Prof. Dr. Sjoerd Harder (Chemie) erhalten je 2,5 Mio. Euro Förderung für ihre Projekte zu Quantenlicht und unedlen Metallen. Mehr Infos: www.nat.fau.de/2025/06/17/z...
nat.fau.de
Zwei ERC Advanced Grants für Prof. Dr. Maria Chekhova und Prof. Dr. Sjoerd Harder
Ein erneuter Beweis für die Forschungsstärke am Wissenschaftsstandort Erlangen-Nürnberg: Zwei Forschende der Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU) sind jetzt mit jeweils einem der…
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FAU Erlangen-Nbg @fau.de · 17/06/2025
Rund 5 Millionen Euro Forschungsförderung für Projekte in der Physik und Chemie an der FAU! Prof. Dr. Maria Chekhova und Prof. Dr. Sjoerd Harder erhalten jeweils einen ERC Advanced Grant 🎉 👇 Mehr erfahren über die geförderten Projekte: www.fau.de/2025/06/news...
fau.de
Zwei ERC Advanced Grants für FAU-Forschende
Zwei Forschende der FAU sind mit jeweils einem der begehrten Advanced Grants des Europäischen Forschungsrats ausgezeichnet worden.
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Harder Research Group @harder-research.bsky.social · 17/06/2025
A LOT OF MONEY FOR CHEAP METALS: Happy that our group has been awarded an ERC-ADVANCED GRANT extending our unique chemistry on main group M(0) chemistry. We thank the many reviewers that trust us continuing to do COOL (OR HOT?) CHEMISTRY. We won’t disappoint you! @FAU #ERCAdG
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Harder Research Group @harder-research.bsky.social · 05/06/2025
OPEN SINGLET DIRADICALOID as intermediate in the Ca-mediated reductive coupling of isocyanide finally resulting in a deltate complex. A unique mechanism in group 2 metal mediated reductive C-C coupling @ChemicalScience pubs.rsc.org/en/content/a...
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Harder Research Group @harder-research.bsky.social · 02/06/2025
Congratulations! Persistence pays off. Wish the team a flying start 👍
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Harder Research Group @harder-research.bsky.social · 28/05/2025
LOW-VALENT Si, Ge, Sn, Pb: HOW LOW CAN WE GO??? Hydrocarbon-soluble Mg(0) reduces Si all the way to Si(4-). Unfortunately not stable and decomposing to the HSi(3-) anion. However, Sn(4-) is stable and functions as 4-fold Nu or 8e reducing agent. Preprint: shorturl.at/4mH0O
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Harder Research Group @harder-research.bsky.social · 24/05/2025
One day in the year the Harder lab turns orange. Great Beer Tasting session with 12 beers from Holland, Belgium and France🍺🍺🍺🍺🍺🍺🍺🍺🍺🍺🍺🍺
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