Hering-Junghans Lab
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hering-lab.bsky.social
Hering-Junghans Lab
@hering-lab.bsky.social
We are Phosphorus Chemsitry enthusiasts.
From Ligand Design with Phosphaalkenes to
Phosphinidene Transfer and Phosphaalumenes.
Located at the LIKAT Rostock.
Pinned
Ayu’s work on CN/NC-isomerism in Dioxophosphoranes is just out in Chem.Sci. Here we show that Cyanophosphides can be cleanly oxidized with O2, giving [ArPO2(CN)]-. Surprisingly both, cyanide and isocyanide form simultaneously! Super exited about this! @likat.bsky.social

pubs.rsc.org/en/content/a...
Reposted by Hering-Junghans Lab
A Crystalline Phosphorus-Substituted Borinium Ion: Double Dihydrogen Activation by an Ambiphilic Inorganic Allene ( @chemicalscience.rsc.org ): pubs.rsc.org/en/content/a....
November 18, 2025 at 8:05 PM
Reposted by Hering-Junghans Lab
Our latest is out now in @angewandtechemie.bsky.social!
Thermochromism, C-H/O activation & redox chem at a planar Bi triamide. Congrats to PhD Will Howlett on leading this @bsky.app initiated collab with @chrisslootweg.bsky.social + @jasonmasuda.bsky.social
@dalchemistry.bsky.social.

bit.ly/480io3T
November 17, 2025 at 3:32 PM
Reposted by Hering-Junghans Lab
Unusual coordination chemistry & reactivity: the methyl #bismuth dication shows a pentagonal pyramidal coordination and can be turned into a Lewis #superacid. Read more about Johannes', @taminazk.bsky.social, and Bene's work in @angewandtechemie.bsky.social: onlinelibrary.wiley.com/doi/10.1002/...!
The Methylbismuth Dication: Pentagonal Pyramidal Coordination and Ligand‐Induced Lewis Superacidity
The simplistic methylbismuth dication has been captured only by the aid of monodentate tetrahydrofuran (thf) ligands, [BiMe(thf)5]2+. The hexacoordinate species shows a very unusual pentagonal pyrami...
onlinelibrary.wiley.com
November 17, 2025 at 11:36 AM
Today two 3rd year students have the pleasure to make some PMe3 in their advanced inorganic lab course! Good job. @likat.bsky.social #31P
November 11, 2025 at 1:21 PM
We present PhD No.4 from the group: Congrats Dr. Ayu! A splendid performance and a PhD period filled with laughter, lab curiosities and brilliant chemistry. Thanks Ayu and all the best for your future!

Also thanks @pchem.bsky.social for being on the committee. #phdone #proudpi #31p
October 28, 2025 at 8:21 PM
Reposted by Hering-Junghans Lab
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....
October 17, 2025 at 1:11 PM
Reposted by Hering-Junghans Lab
We're delighted to share the success of Marcel Schorpp's (@m-schorpp.bsky.social) first independent article, published in ChemComm!

"A diazadiphospholenium cation featuring a reactive P[double bond, length half m-dash]P bond: synthesis and reversible main-group bond activation"

buff.ly/Lnu0QOR
A diazadiphospholenium cation featuring a reactive PP bond: synthesis and reversible main-group bond activation
We report a high-yielding synthesis of a novel diazadiphospholenium cation featuring a sterically exposed, reactive P [[double bond, length half m-dash]] P bond. It displays aromatic properties and gr...
pubs.rsc.org
October 15, 2025 at 2:14 PM
Reposted by Hering-Junghans Lab
Our group's very first ACIE paper is out!🥳

Awesome work by Soti and a great cooperation with the Bittl group and @franemmerling.bsky.social.

Dedicated to @christianlimberg.bsky.social and Franc Meyer

@humboldtuni.bsky.social @manchester.ac.uk

onlinelibrary.wiley.com/doi/full/10....
October 14, 2025 at 11:16 AM
Reposted by Hering-Junghans Lab
Here's the latest from Goicoechea Group alumnus and master synthetic chemist Chenyang Hu:

onlinelibrary.wiley.com/doi/10.1002/...

Some very elegant double-bond metathesis chemistry allows access to a phosphorus(III) telluride completing our collection of phosphorus-chalcogen double bonds.
Synthesis, Isolation, and Reactivity of a Phosphinidene Telluride
We describe the synthesis and isolation of a phosphinidene telluride. This species acts as a versatile phosphinidene transfer reagent accompanied by the extrusion of elemental tellurium.
onlinelibrary.wiley.com
September 12, 2025 at 2:39 PM
Having a blast at the 1st MG-ERC meeting in Namur! Thanks Guillaume for the invitation to part of this exciting line-up of speakers.
For the third plenary lecture of the day, we have @hering-lab.bsky.social from LIKAT-Rostock, who will be talking about non-classical double bonds, focusing on Phosphaalkenes and Phosphaalumenes.
September 9, 2025 at 1:21 PM
Kushiks latest work on Carbazole-based bisPA ligands and aspects of their coordination chemistry with Rh(I) is now out @daltontrans.rsc.org Great work and thanks everyone for their help! #31p #phosphorus @likat.bsky.social
August 15, 2025 at 6:54 AM
Reposted by Hering-Junghans Lab
Excited to kick off this new account with great news: our latest work just appeared in Angewandte Chemie (onlinelibrary.wiley.com/doi/10.1002/...)! Huge thanks to our fantastic collaborators from the groups of Florian Weigend, Xulian Xie, and Xue-Bin Wang!
A Thorough Characterization of the Tellurocyanate Anion
[K@crypt-222][TeCN] was synthesized from KCN, Te, and crypt-222 in acetone. We discuss fundamental properties of [TeCN]−: Single crystal X-ray diffraction, nuclear magnetic resonance (13C, 15N, 125Te...
onlinelibrary.wiley.com
June 4, 2025 at 6:59 AM
Looking forward to a my visit at Heidelberg University. But first some views from the Königsstuhl!
June 3, 2025 at 8:49 AM
Reposted by Hering-Junghans Lab
A new(ish) anion on the block for SMOM chemistry. Kris Altus’ latest on the organometallic chemistry of [B(O2C2(CF3)4)2]−. As well as showing this anion is a useful one in organometallic chemistry there is a cautionary note about the toxicity of a starting material.

pubs.acs.org/doi/10.1021/...
[B(O2C2(CF3)4)2]− ([FPB]−): Repurposing This Weakly Coordinating Anion for Solid-State Molecular Organometallic (SMOM) Chemistry
The perfluoropinacol borate-based anion [B(O2C2(CF3)4)2]−, [FPB]–, is developed as a weakly coordinating anion for single-crystal to single-crystal organometallic solid/gas reactivity, resulting in the isolation and characterization (including periodic DFT and IGMH analysis) of the σ-alkane complex [Rh(Cy2PCH2CH2PCy2)(exo-η2η2-norbornane)][FPB]. The synthetically useful solvent-free Na+ salt, Na[FPB], and oxonium acid [H(OEt2)2][FPB] are also reported.
pubs.acs.org
May 4, 2025 at 6:59 PM
Reposted by Hering-Junghans Lab
Now out as a preprint!
We demonstrate how we can use our biradicaloid ligand to stabilise a series of main-group cations and their application to prepare pi-complexes of diatomic [EX]+ cations, including [GeF]+ and [SnF]+ :)
chemrxiv.org/engage/chemr...
π-Complexes of Main-group Metal cations: Exploration of Lewis acid reactivity
A series of cationic nido-clusters [E(η4-IDP)]+/2+ was prepared from the imidazolium-substituted diphosphate-diide (IPr)2C2P2 (IDP), including [1]+ (E = Ga) and [2b,c]2+ (E = Sn, Pb). As analogues of ...
chemrxiv.org
April 29, 2025 at 12:24 PM
A simple molecule that shows some neat chemistry! Congrats @munzgroup.bsky.social and team, and of course former PostDoc @fabiandankert.bsky.social
April 28, 2025 at 10:26 AM
Reposted by Hering-Junghans Lab
'Capture of an In Situ Formed Distanna-S-heterocyclic Carbene' from Inorganic Chemistry is an open access #ACSEditorsChoice.

📖 Read the article: buff.ly/beB5UrH
April 15, 2025 at 12:02 PM
Reposted by Hering-Junghans Lab
We are getting started! Doctoral positions are open at the Chair of Inorganic Chemistry at the Otto-von-Guericke-University Magdeburg (three-year contract, 65% TVL E13).
ovgu.b-ite.careers/jobposting/f...
April 14, 2025 at 1:34 PM
Reposted by Hering-Junghans Lab
Our DFG-funded RTG-3082 Ec=m2 is hiring 10 PhD Scholars! Check out further details at: shorturl.at/Tue2T
ecm2.org
@dfg.de @uni-saarland.de @leibnizinm.bsky.social #Engineering_Covalent_Bonds_in_Molecules_and_Materials
April 14, 2025 at 12:20 PM
Rreactivity of Pnictaalumenes towards 1,3-Dipole Molecules fresh out in @angewandtechemie.bsky.social Tim, Edgar and Leonie uncover unique insertion chemsitry giving a plethora of Al,P,N-heterocycles! Again a fruitful collaboration with the Braunschweig Group!

doi.org/10.1002/anie...
April 10, 2025 at 3:21 PM
Had my last day as a substitute professor in Magdeburg yesterday. The flowers on the desk are for incoming @bunzenlab.bsky.social (curtesy of the inorganic department) All the best for the start!
April 1, 2025 at 8:02 AM
Reposted by Hering-Junghans Lab
Senior @ucalgary.bsky.social undergrad George Doerksen’s summer research at @helsinki.fi - supported by @mitacscanada.bsky.social and conducted with Petra Vasko and Timo Repo - is reported in @chemcomm.rsc.org.
pubs.rsc.org/en/content/a...
Metal-free alkene hydroboration with pinacolborane employing C6F5BH2·SMe2 precatalyst
We have developed C6F5BH2·SMe2 as a unique, metal-free precatalyst for alkene hydroboration. It combines high reactivity and excellent regio- and chemoselectivity. Mechanistic studies reveal that the ...
pubs.rsc.org
March 30, 2025 at 11:04 PM
What about an inverse Wittig-Reaction, cool stuff @goicoecheagroup.bsky.social
Fresh out of the oven. Check out Chenyang’s most recent work in JACS (@jacs.acspublications.org). We explore the reactivity of a phosphinidene oxide as the electrophilic partner in Wittig transformations. Hope you enjoy.

pubs.acs.org/doi/full/10....
A Fresh Twist on the Phospha-(Aza)-Wittig Reaction
The reactivity of an unsupported phosphinidene oxide, BnArNP═O (Bn = benzyl; Ar = bulky aryl group), as the electrophilic partner in Wittig reactions with ylides is described. Reactions with methylene-triphenylphosphorane (H2C═PPh3) and ethylidene-triphenyl-phosphorane (HMeC═PPh3), proceed as expected, giving rise to the phosphaalkene metathesis products and triphenylphosphine oxide. This reaction can be extended to other ylides such as N-(triphenylphosphoranylidene)methanamine (MeN═PPh3), to afford an aminoiminophosphane BnArNP═NMe. In these reactions the phosphinidene oxide plays the role of an electrophile, which would typically be the remit of an organic carbonyl in classical Wittig reactions. Further mechanistic insight into such transformations can be gained by altering the nature of the phosphorus-ylide. Upon reacting BnArNP═O with H2C═PMe3 (which possesses a smaller, more Lewis basic, phosphine) an alternative product is formed. This transformation supports the formation of a betaine intermediate that subsequently undergoes hydrogen-migration to afford an oxidized phosphorus(V) compound related to phosphorus acid.
pubs.acs.org
April 1, 2025 at 5:43 AM
Reposted by Hering-Junghans Lab
Reversible single-electron-transfer (SET) in #maingroup systems—cyclic pnictogen radicals—analogs of aryl radical anions in Birch reductions— @angewandtechemie.bsky.social Congratulations to Henric and all @ghadwalgroup.bsky.social
@basdebruin.bsky.social onlinelibrary.wiley.com/doi/10.1002/...
March 31, 2025 at 8:05 AM
Super cool work by @muellergroup.bsky.social Congrats to the team and of course to @petrovchem.bsky.social
Together with @muellergroup.bsky.social we elucidated the molecular structure of "naked" cyclo-P5- in the crystal! Special thanks to Mirjam and Prof. Corzilius for their help with 31P ssNMR studies.

Read our @angewandtechemie.bsky.social commuinaction here: doi.org/10.1002/anie...
March 29, 2025 at 6:37 AM