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Our latest work on high-performance dysprosium SMMs has been deposited as a preprint on @chemrxiv.org: chemrxiv.org/doi/full/10.... We get high hysteresis temperatures by combining the advantageous properties of amides and cyclopentadienyls 🙌@nfchilton.bsky.social @jackbwin.bsky.social
6d
chemrxiv.org
Molecules showing magnetic memory effects at high temperatures could be used in high-density data storage devices. A magnetic hysteresis temperature (TH) of 100 K has been achieved for a near-linear d...
Online petition and open letter to the University of Nottingham in response to its plans for redundancies in the School of Chemistry. nottinghamchemistry.github.io/Open_Letter/
27d
Axial dysprosium cyclopentadienyl-amide single-molecule magnets with hysteresis up to 92 kelvin | ChemRxiv
nottinghamchemistry.github.io
Save Nottingham Chemistry
Hi folks, I’m on the ballot for President of the @rsc.org. I’m standing because we live in post-truth times where respect for expertise & evidence can no longer be taken for granted. It’s time to push back. If that resonates, RSC members can vote here www.mi-vote.com/secure/rsc 🗳️🙏
1mo
Dave Leigh
www.mi-vote.com
Dave Leigh
#NewPI #Openings Dr. Hanna Cramer @h2cramer.bsky.social recently started her independent group at the Ruhr University Bochum. Check out her website below. She's looking to hire BS, MS and PhD students.
24d
David Mills
@hannahredmill.bsky.social 's first paper has just been published in Inorganic Chemistry, studying rare earth silylphosphide complexes and some gorgeous EPR: pubs.acs.org/doi/full/10.... thanks to co-authors including @meaganoakley.bsky.social @jeffjefftyjeff.bsky.social @jackbwin.bsky.social
I've tried to collate the public data on Nottingham's teaching to help everyone make some noise about the proposed redundancies. Please sign the petition if you feel able. www.michaeloneill.org/blog-1/2026/5/16/nottingham-redundancies-briefing-data
@hannahredmill.bsky.social 's reaction of a yttrium phosphide complex with carbon dioxide to give a phosphinocarboxylate has just been published as a preprint on @chemrxiv.org: chemrxiv.org/doi/full/10.... Thanks to @jefftyjeffjeff.bsky.social for the help with a gorgeous crystal structure 🤩!
Our latest paper in collaboration with the Liddle, @nfchilton.bsky.social and @conradgoodwin.bsky.social groups investigating uranium ketimides is now published in Inorganic Chemistry, with @john-seed.bsky.social and other Manchester and ANU Chemistry peeps: pubs.acs.org/doi/10.1021/...
🚨 I’m looking for a PhD student to join my group at @leicesterchem.bsky.social as a Graduate Teaching Assistant (GTA). Project on Ti complexes for CO2 valorisation & sustainable materials. #organometallics #catalysis Full training provided. Deadline 22 June. Start Sept 2026. le.ac.uk/study/resear...
28d
21d
26d
1mo
ResearchA more sustainable chemical industry must move away from fossil-based carbon sources and instead utilize renewable feedstocks, such as CO2 or…
forschung.ruhr-uni-bochum.de
4d
Hanna Hinrika Cramer Research Group
Rare-earth (RE) bis(trimethylsilyl)amide ({N(SiMe3)2}−, N″) chemistry is well-developed, whereas RE bis(trimethylsilyl)phosphide {P(SiMe3)2}− (P″) chemistry is immature. Here, we report a convenient protonolysis route to dimeric RE P″ complexes [RE(P″)2(μ-P″)]2 (1-RE; RE = Y, Gd, Dy, Er) from parent [RE(CH2C6H4-o-NMe2)3] and excess HP″. The reactions of 1-RE with THF gave the monomeric RE P″ complexes [RE(P″)3(THF)2] (2-RE; RE = Y, Gd, Dy, Er), and treatment of 1-RE with 2 eq. of KP″ gave the RE “ate” coordination polymers [RE(P″)2(μ-P″)2K]∞ (3-RE; Y, Gd, Dy, Er). Complexes 1-RE, 2-RE, and 3-RE were characterized by single-crystal XRD, elemental analysis, and NMR, ATR-IR, and UV–vis–NIR spectroscopy. All paramagnetic 1-RE and 2-RE were also characterized by EPR spectroscopy and SQUID magnetometry, supported by ab initio calculations. We find that weak magnetic exchange interactions persist between RE centers in dimeric 1-RE and that their principal magnetic axes are oriented between the phosphide ligands as a consequence of the diffuse crystal field (CF) associated with the long RE–P bonds. For monomeric 2-RE, the principal magnetic axes are also oriented between ligands, reflecting competition between three long RE–P bonds and two short RE–O bonds that contribute approximately equally to the crystal field anisotropy.
pubs.acs.org
The University of Nottingham has served notice to staff in its Chemistry Department that they are at risk of redundancy. This blog is intended to do two things: Publicise the petition to oppose t...
www.michaeloneill.org
Reaction of a Yttrium Phosphide Complex with Carbon Dioxide Gives a Paddlewheel-Like Phosphinocarboxylate | ChemRxiv
Nottingham Redundancies: Briefing Data — Michael O'Neill
Synthesis and Characterization of Monomeric, Dimeric, and Polymeric Rare-Earth Bis(trimethyl)silylphosphide Complexes
The insertion of carbon dioxide into rare earth metal-phosphorus bonds is underexplored compared to many other rare earth metal-ligand σ-bonds. Treatment of a C6D6 solution of the dimeric yttrium bis(...
chemrxiv.org
4 year Graduate Teaching Assistant PhD in Chemistry. University of Leicester
le.ac.uk
Chemistry Graduate Teaching Assistant (GTA) PhD | Postgraduate research | University of Leicester
Reactions of a Uranium(III) Complex with N-Heterocycles to Form Diuranium(IV) Ketimides
The chemistry of the classical uranium(III) complex [U(N″)3] (N″ = {N(SiMe3)2}−) is well-developed; however, there have been surprisingly few studies of its reactivity toward N-heterocycles. Here, we ...
pubs.acs.org
David Mills
David Mills
David Mills
Sandy Kilpatrick
Connie Lu
Michael O’Neill
I have recently started my independent research at @ruhr-uni-bochum.de as part of the RESOLV excellence cluster @solvationsci.bsky.social and have openings for Bachelor, Master, and PhD students! Check out my website below: forschung.ruhr-uni-bochum.de/en/hanna-hin...
23d
ResearchA more sustainable chemical industry must move away from fossil-based carbon sources and instead utilize renewable feedstocks, such as CO2 or…
forschung.ruhr-uni-bochum.de
Hanna Hinrika Cramer Research Group
Hanna Hinrika Cramer