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Observation of relativistic bond weakening in seaborgium hexacarbonyl

Alexander Yakushev iD, Jadambaa Khuyagbaatar iD, Christoph E. Düllmann iD, Valeria Pershina, Matthias Schädel, Jochen Ballof, Pavel Bartl iD, Michael Block iD, Raul-Andrei Cantemir, Dominik Dietzel iD, Francesca Giacoppo, Katharina Hermainski iD, Rolf-Dietmar Herzberg iD, Jan John iD, Jörg Krier, Nikolaus Kurz iD, Sven Löchner iD, Moumita Maiti iD, Pavol Mošať iD, Sebastian Raeder iD, Tetsuya K. Sato iD, Brigitta Schausten, Juha Uusitalo, Peter Wieczorek

DOI10.1038/s41586-026-11105-2
PublisherSpringer Science and Business Media LLC
Journal / SourceNature
Published2026-10-08
Metadata Deposited2026-10-07 (updated: 2026-10-07)
Subject—
Languageen
ISSN0028-0836, 1476-4687
Typejournal-article
Volume / Issue / Pages658 / 8135 / 337-341
Citations0
References deposited51
Access / license metadataOpen license identified License 1 ↗A reuse license does not by itself establish whether the full text is freely readable.

Abstract

Abstract The seventh row of the periodic table of the elements has been completed with the discovery of the five heaviest elements from flerovium (Fl, Z  = 114) through oganesson (Og, Z  = 118) 1 . Chemical properties of the superheavy elements (SHE, Z  ≥ 104) are unique owing to the strong influence of relativistic effects on their valence electron shells 2 . The stability of the metal–ligand bonding in carbonyl complexes is a property that is predicted to be affected by such effects 3,4 . Here we present an experimental gas chromatography study on the stability of the Sg(CO) 6 complex. The measured formation yields of Sg(CO) 6 and W(CO) 6 enabled determining the first bond dissociation energy (FBDE) of Sg(CO) 6 , which is 4(2) kJ mol −1 lower than that of W(CO) 6 and corresponds to a value of 188(9) kJ mol −1 . Thus, the trend of increasing FBDE values of hexacarbonyls within group 6 of the periodic table is reversed from W to Sg. Our result agrees with state-of-the-art theoretical calculations, which predict a decrease in the FBDE from W(CO) 6 to Sg(CO) 6 owing to the relativistic destabilization of the 6d atomic orbitals (AOs) in Sg (ref.  4 ). Also, the adsorption enthalpy value of Sg(CO) 6 on gold of $${45}_{-6}^{+4}\,{\rm{kJ}}\,{{\rm{mol}}}^{-1}$$ 45 − 6 + 4 kJ mol − 1 is reported.