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Student-run account of the Copéret Group at ETH Zürich https://coperetgroup.ethz.ch/
Copéret Group









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Pioneering works explained the MOs of metal clusters through a fragment approach, later supported by DFT. Here, we show that 195Pt ssNMR fingerprints of Chini clusters encode information about their electronic structure. Read about our work in @jacs.acspublications.org pubs.acs.org/doi/10.1021/...
Pioneering works explained the MOs of metal clusters through a fragment approach, later supported by DFT. Here, we show that 195Pt ssNMR fingerprints of Chini clusters encode information about their electronic structure. Read about our work in @jacs.acspublications.org pubs.acs.org/doi/10.1021/...
Copéret group picture FS '26. Together, We’re the perfect Fit for Science!
Congrats to Anna on the successful defense of her PhD! 🎉Her work focused on the use of nuclear quadrupole resonance (NQR) to understand the state of chlorine in industrial catalytic processes. Many thanks to Dr. Florian and Dr. Pauschinge for serving as examiners.
Congrats to Enzo on the successful defense of his PhD! 🎉His work focused on the use of advanced microscopy to understand the behaviour of well-defined catalysts. Many thanks to Prof. Ersen and Müller for serving as examiners.
Congrats to Domenico on the successful defense of his PhD! 🎉His work focused on advancing the molecular understanding of SACs and clusters using solid-state NMR and DFT calculations. Many thanks to Professors G. Pacchioni and B. Chaudret for serving as examiners.
Congrats to Domenico on the successful defense of his PhD! 🎉His work focused on advancing the molecular understanding of SACs and clusters using solid-state NMR and DFT calculations. Many thanks to Professors G. Pacchioni and B. Chaudret for serving as examiners.
Synthesizing Pt/γ-Al2O3 materials, ubiquitous in heterogeneous catalysis, with well-defined Pt nuclearity remains challenging. In this work, we demonstrate how SOMC can be employed to tune cluster size down to single atoms. @chemistryeurope.bsky.social doi.org/10.1002/cctc...
It was also an honor to welcome Professor O. Eisenstein— a pioneer in the use of NMR computations to understand organometallic catalysts and a long-standing collaborator— to the group on the same day!
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...
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Optimizing Pt/γ-Al2O3 catalysts by surface organometallic chemistry: the MeCpPtMe3 precursor excels in isolating Pt single atoms post-calcination, more than tmedaPtMe2 and CODPtMe2. Reduction forms s...
doi.org
Tailoring Metal Nuclearity of Pt/γ‐Al2O3 Catalysts: When Molecular Precursors Matter
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....
doi.org
Speciation, Structural Refinement, and Distribution of Ti Sites in Titanium Silicalite‐1 From 47/49Ti NMR Crystallography at 28.2 Tesla
Metal clusters are of broad interest across fields in that they possess unique properties making them appealing for a variety of applications; additionally, they provide fundamental understanding of t...
pubs.acs.org
Electronic Structures of Pt(0) Complexes and Atomically Precise Clusters from Solid-State 195Pt NMR Signatures
Metal clusters are of broad interest across fields in that they possess unique properties making them appealing for a variety of applications; additionally, they provide fundamental understanding of t...
pubs.acs.org
Electronic Structures of Pt(0) Complexes and Atomically Precise Clusters from Solid-State 195Pt NMR Signatures