Wöhner Kevin, Wulf Toshiki, Vankova Nina, Heine Thomas
Institute of Resource Ecology, Research Site Leipzig, Helmholtz-Zentrum Dresden-Rossendorf, 04318 Leipzig, Germany.
Faculty of Chemistry and Food Chemistry, School of Science, TU Dresden, 01062 Dresden, Germany.
J Phys Chem A. 2021 Jun 10;125(22):4760-4765. doi: 10.1021/acs.jpca.1c01909. Epub 2021 May 26.
We systematically explore the stability and properties of [BXNG] adducts resulting from the binding of noble gas atoms to anionic [BX] clusters in the gas phase of mass spectrometers. [BX] can be obtained by stripping one X off the icosahedral -dodecaborate dianion [BX]. We study the binding of the noble gas atoms He, Ne, Ar, Kr, and Xe to [BX] with substituents X = F, Cl, Br, I, and CN. While He cannot be captured by these clusters and Ne only binds at low temperatures, the complexes with the heavier noble gas atoms Ar, Kr, and Xe show appreciable complexation energies and exceed 1 eV at room temperature in the case of [B(CN)Xe]. The predicted B-NG equilibrium distance in the complexes with Ar, Kr, and Xe is only 0.10-0.25 Å longer than the sum of the covalent radii of the two corresponding atoms, and a significant charge transfer from the noble gas atom to the icosahedral B cage is observed.
我们系统地研究了在质谱仪气相中稀有气体原子与阴离子[BX]簇结合形成的[BXNG]加合物的稳定性和性质。[BX]可通过从二十面体十二硼酸盐二阴离子[BX]中脱去一个X得到。我们研究了稀有气体原子He、Ne、Ar、Kr和Xe与取代基X = F、Cl、Br、I和CN的[BX]的结合情况。虽然He不能被这些簇捕获,Ne仅在低温下结合,但与较重的稀有气体原子Ar、Kr和Xe形成的配合物显示出可观的络合能,在室温下,对于[B(CN)Xe],其络合能超过1 eV。预测与Ar、Kr和Xe形成的配合物中B-NG平衡距离仅比两个相应原子的共价半径之和长0.10 - 0.25 Å,并且观察到有显著的电荷从稀有气体原子转移到二十面体B笼。