The recent success in the formation of chlorinated telluraboranes and the reactivities of pnictogenaboranes prompted us to re-examine the vacuum co-pyrolysis of BCl with SeCl at various molar ratios and temperatures in order to search for the generation of other polyhedral selenaboranes than -SeBCl (1a) and -SeBCl (1b), the latter being observed earlier. Interestingly, a new compound with the elemental composition SeBCl (2) was detected, this time by high- and low-resolution mass spectrometry. Further characterization by 1- and 2-D B-NMR spectroscopy suggests that 2 should adopt a closed bicapped square-antiprismatic geometry with selenium at the apical position. Moreover, vacuum sublimation gave suitable crystals of 1b, which were subjected to single-crystal X-ray structure determination. Crystallographic data analysis confirmed that 1b, consistent with its 26 skeletal electron count, adopts a distorted icosahedral structure close to the symmetry of . Computations at the DFT-D3 level have revealed that 33% of the total computed binding motifs in the grown 1b crystals are due to the very strong chalcogen bonding. Moreover, SAPT decomposition has shown that the bonding motifs in the crystals are stabilized mainly by dispersion and electrostatic terms. Homodecoupling and high resolution B NMR and Se NMR experiments have resolved both coupling constants (BB) and (SeB) as well as the Se chemical shift of 1a and 1b, which are in reasonable agreement with the corresponding computed values. The computed B chemical shifts of 2 were determined by the well-established DFT/GIAO/NMR structural tool based on its B3LYP/6-311+G** internal coordinates. They agree well with the experimental values and provide a good representation of the molecular structure of 2 in solution. The extraordinary downfield B NMR chemical shift of B(10) in 2 has been ascribed to the intensive paramagnetic contribution to the shielding tensor in this bicapped square-antiprismatic motif. Calculations of the synproportionation free energies of smaller ( - 1) -selenaboranes with larger-sized ( + 1) ones support the extraordinary stability of octahedral, bicapped square-antiprismatic and icosahedral motifs in the SeBCl family ( = 4-12).
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http://dx.doi.org/10.1039/d3dt02987e | DOI Listing |
Angew Chem Int Ed Engl
November 2024
Institut für Anorganische Chemie, Universität Stuttgart, Pfaffenwaldring 55, D-70569, Stuttgart, Germany.
Six-vertex closo-SBCl (1) and ten-vertex closo-1-SBCl (2) thiaboranes have been prepared, besides the already known 12-vertex closo-SBCl (3), from the co-pyrolysis reaction of BCl with SCl at 280 °C in vacuo. The compounds are sublimable, off-white solids. Their elemental composition has been determined by high-resolution mass spectrometry.
View Article and Find Full Text PDFDalton Trans
November 2023
Institute of Inorganic Chemistry of the Czech Academy of Sciences, 250 68 Husinec-Řež, Czech Republic.
The recent success in the formation of chlorinated telluraboranes and the reactivities of pnictogenaboranes prompted us to re-examine the vacuum co-pyrolysis of BCl with SeCl at various molar ratios and temperatures in order to search for the generation of other polyhedral selenaboranes than -SeBCl (1a) and -SeBCl (1b), the latter being observed earlier. Interestingly, a new compound with the elemental composition SeBCl (2) was detected, this time by high- and low-resolution mass spectrometry. Further characterization by 1- and 2-D B-NMR spectroscopy suggests that 2 should adopt a closed bicapped square-antiprismatic geometry with selenium at the apical position.
View Article and Find Full Text PDFBorane and heteroborane clusters have been known as neutral or anionic species. In contrast to them, several ten-vertex monocationic and dicarbaborane-based systems have recently emerged from the reaction of the parent bicapped-square antiprismatic dicarbaboranes with N-heterocyclic carbenes followed by the protonization of the corresponding intermediates. The expansion of these efforts has afforded the very first -dicationic octahedral phosphahexaborane along with new monocationic pnictogenahexaboranes of the same shapes.
View Article and Find Full Text PDFPharmaceuticals (Basel)
April 2022
Veterinary Department, Faculty of Agriculture and Veterinary Medicine, Thamar University, Dhamar 2153, Yemen.
The thermal condensation of 3-(2-Furyl)acrolein with 2-Amino-6-ethoxybenzothiazole generated a new Schiff base, (1E,2E)-N-(6-ethoxybenzo[d]thiazol-2-yl)-3-(furan-2-yl)prop-2-en-1-imine (), with general formula of CHNOS. Also, a series of lanthanide complexes of gadolinium, samarium, and neodymium (-) were synthesized utilizing acetonitrile as the solvent and triethylamine as a buffer and catalyst. Based on elemental analysis, mass spectroscopy, and FTIR analysis, all of the Bis-(1E,2E)-N-(6-ethoxybenzo[d]thiazol-2-yl)-3-(furan-2-yl)prop-2-en-1-iminetri-nitratolanthanide(III) complexes with the general formula [Ln(NO)]·HO are solids with a 2:1 molar ratio (ligand: metal).
View Article and Find Full Text PDFJ Comput Chem
May 2022
MOE Key Laboratory for Non-Equilibrium Synthesis and Modulation of Condensed Matter, School of Physics, Xi'an Jiaotong University, Xi'an, China.
The geometries, electronic structures, and bonding properties of the title endohedral Zintl clusters have been studied by using ab initio calculations. [Fe@Ge ] and [Co@Ge ] have D -symmetric pentagonal prismatic structure and [Fe@Sn ] adopts the C -symmetric structure as their ground-state structures, whereas all the other clusters possess D bicapped square antiprismatic structures, in consistent with the experimental values when available. Natural bonding orbital and electron localization function disclosed that the negative charges are localized on the central atoms rather than the cages while the TME ionic bonding interactions increase in the order of Ge < Sn < Pb.
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