Since the advent of organotransuranium chemistry six decades ago, structurally verified complexes remain restricted to π-bonded carbocycle and σ-bonded hydrocarbyl derivatives. Thus, transuranium-carbon multiple or dative bonds are yet to be reported. Here, utilizing diphosphoniomethanide precursors we report the synthesis and characterization of transuranium-carbene derivatives, namely, diphosphonio-alkylidene- and -heterocyclic carbene-neptunium(III) complexes that exhibit polarized-covalent σπ multiple and dative σ single transuranium-carbon bond interactions, respectively. The reaction of [NpI(THF)] with [Rb(BIPMH)] (BIPMH = {HC(PPhNSiMe)}) affords [(BIPMH)Np(I)(THF)] () in situ, and subsequent treatment with the -heterocyclic carbene {C(NMeCMe)} (I) allows isolation of [(BIPMH)Np(I)(I)] (). Separate treatment of in situ prepared with benzyl potassium in 1,2-dimethoxyethane (DME) affords [(BIPM)Np(I)(DME)] (, BIPM = {C(PPhNSiMe)}). Analogously, addition of benzyl potassium and I to gives [(BIPM)Np(I)(I)] (). The synthesis of - was facilitated by adopting a scaled-down prechoreographed approach using cerium synthetic surrogates. The thorium(III) and uranium(III) analogues of these neptunium(III) complexes are currently unavailable, meaning that the synthesis of - provides an example of experimental grounding of 5f- vs 5f- and 5f- vs 4f-element bonding and reactivity comparisons being led by nonaqueous transuranium chemistry rather than thorium and uranium congeners. Computational analysis suggests that these Np═C bonds are more covalent than U═C, Ce═C, and Pm═C congeners but comparable to analogous U═C bonds in terms of bond orders and total metal contributions to the M═C bonds. A preliminary assessment of Np═C reactivity has introduced multiple bond metathesis to transuranium chemistry, extending the range of known metallo-Wittig reactions to encompass actinide oxidation states III-VI.
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http://dx.doi.org/10.1021/jacs.2c02152 | DOI Listing |
Phys Chem Chem Phys
January 2025
Grupo de Química Computacional y Teórica (QCT-USFQ), Departamento de Ingeniería Química, Universidad San Francisco de Quito, Diego de Robles y Vía Interoceánica, Quito 17-1200-841, Ecuador.
A theoretical description of various [AeX] (Ae = Be-Ba, X = F-I) systems, some of which have been reported in the literature to bear an unusual quadruple bond between the metal and the halogen, is provided based on both (i) the localization of the Fermi hole and (ii) the topological analysis of the one-electron density. Insights into the bond order of various [AeX] systems are inferred on the basis of the number of electrons localized in the bond basin, the topology of the Fermi hole information computed along the bond axis, and the delocalization index. The results suggest that the [AeX] molecules present a bond with attributes closer to a classical dative bond than to a multiple one, being characterized by large stabilization due to the electrostatic interaction between the polarized metal and the halogen anion.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
December 2024
Department of Chemistry, University of California, One Shields Avenue, Davis, California, USA, 95616.
Careful analysis of the crystals formed in the reduction of ArAlI (Ar=CH-2,6-(CH-2,4,6-Pr)-3,5-Pr) with sodium on sodium chloride showed them to contain the long sought-after dialuminene ArAlAlAr (1) that forms alongside the previously characterized alanediyl :AlAr. The single crystal X-ray structure of 1 revealed a nearly planar, trans-bent C(ipso)AlAlC(ipso) core with an Al-Al distance of 2.648(2) Å.
View Article and Find Full Text PDFPhys Chem Chem Phys
August 2024
Advanced Computational Chemistry Centre, Cotton University, Panbazar, Guwahati, Assam-781001, India.
Chemical bonding is the fundamental concept in chemistry and multiple bonding holds a special position. Recent quantum chemical calculations predicted the presence of triple dative bonds in BeF and MgF and quadruple dative bonds in CaF anions. The present quantum chemical calculations based on quantum theory of atoms in molecules (QTAIM), electron localization function (ELF) and adaptive density partitioning (AdNDP) analyses find no sign of multiple dative bonding in these anions.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
October 2024
Department of Materials Science and Engineering, City University of Hong Kong, Tat Chee Avenue, Kowloon Tong, Hong Kong SAR, P. R. China.
The multiple mortise-and-tenon joint parts are the core factors to provide the structural stability and diversity of Chinese Luban locks; however, constructing such structures is very challenging. Herein, single crystals of a covalent organic nanoribbon (named CityU-27) are prepared through the assembly of hexahydroxytriphenylene (HHTP), 4,4'-vinylenedipyridine (BYE), and phenylboronic acid (BA) together through dative boron←nitrogen (B←N) bonds. The single-crystal X-ray diffraction analysis indicates that CityU-27 has a covalent organic nanoribbon structure, where each nanoribbon forms multiple and tight π-π interactions with four neighboring others to generate a Luban lock-like configuration.
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