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Pragati Pandey

@pragatipandey.bsky.social
23 followers 21 following 3 posts

Assistant Professor at IIT Jodhpur Organometallic Chemist interested in f-elements, catalysis and molecular materials: Former scientist @EPFL Switzerland; Former Postdoc @UPenn in Schelter group; Ph.D from IIT Kanpur

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Pragati Pandey @pragatipandey.bsky.social · 16/06/2026
Synthesis and Properties of Stable Oxo-Bridged Dinuclear PrIV Complexes | Journal of the American Chemical Society pubs.acs.org/doi/10.1021/...
pubs.acs.org
Synthesis and Properties of Stable Oxo-Bridged Dinuclear PrIV Complexes
The development of the molecular chemistry of lanthanides in the +4 oxidation state has encountered significant challenges due to their limited solution stability. Here, we demonstrate that combining siloxide ligands with oxo ligands leads to highly stable PrIV complexes. We report that the PrIII/PrIII oxo-bridged complex, [K(tol)K4{PrIII(OSiMe3)5}{PrIII(OSiMe3)4}(μ-O)], 4, can be easily prepared by controlled hydrolysis of the pentakis–siloxide complex [K2PrIII(OSiMe3)5]2, 2, followed by deprotonation. Oxidation of complex 4 with thianthrene tetrafluoroborate (thiaBF4) in the presence of KOSiMe3 afforded the PrIII/PrIV mixed valent complex [K(tol)K4{PrIII/IV(OSiMe3)5}2(μ-O)] 5 that showed localized valence with a very short PrIV═O bond, consistent with multiple bonding interactions. DFT studies further confirmed the presence of a polarized PrIV═O multiple bond along with a very weak ionic PrIII–O interaction. Further oxidation of complex 5 led to the isolation of the PrIV/PrIV complex [K4{PrIV(OSiMe3)5}2(μ-O)], 6. Complex 6 shows remarkable solution stability at room temperature over a long period of time. Interestingly, the EPR spectra and magnetic properties of these molecular PrIV complexes closely resemble those of PrIV ions in perovskite oxide lattices. We anticipate the presented strategy will pave the way for the development of new LnIV chemistry.
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Pragati Pandey @pragatipandey.bsky.social · 14/10/2025
doi.org/10.1039/D5SC... Interested in how fine tuning of reaction conditions and judicious choice of oxidising agent can lead to isolation of rare Pr(IV) complexes...the answer is here! Thanks to all my collaborators for this wonderful chemistry. @ChemicalScience.rsc.org
doi.org
Accessing homoleptic neutral and anionic five-coordinate Pr(IV) siloxide complexes
Structurally characterized Pr(iv) complexes are limited to four examples because the ligands and reaction conditions capable of stabilizing Pr(iv) remain elusive. Here we identify reaction conditions ...
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Pragati Pandey @pragatipandey.bsky.social · 26/04/2025
www.nature.com/articles/s41... Interested in single crystal to single crystal ring opening reaction and participation of 4f orbital here is recent article @natchem.nature.com by Schelter’s group and team!!
nature.com
4f-orbital covalency enables a single-crystal-to-single-crystal ring-opening isomerization in a CeIV–cyclopropenyl complex - Nature Chemistry
Computational and spectroscopic studies of molecular lanthanide complexes have implicated 4f orbitals in metal–ligand bonding interactions. Now, a comparative study of isostructural d-block, actinide ...
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Reposted by Pragati Pandey
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 Pragati Pandey
John Seed @john-seed.bsky.social · 11/04/2025
Years in the making – 3-centre-1-electron trithorium metal-metal bonding. Out now in @natchem.nature.com ! www.nature.com/articles/s41...
nature.com
Valence-delocalized trithorium nanocluster superatoms with open-shell exalted diamagnetism - Nature Chemistry
Superatoms are metal clusters that collectively behave like an atom, but they usually require metal–metal bonding and thus they are based on main group or transition metals. Now it has been shown that...
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