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氩基质中 HAnX 和 HAnX 分子(An=Th 和 U,X=Cl 和 Br)的红外光谱:基于电子结构计算的支持。

Infrared Spectra of the HAnX and H AnX Molecules (An=Th and U, X=Cl and Br) in Argon Matrices Supported by Electronic Structure Calculations.

机构信息

Institut für Chemie und Biochemie, Freie Universität Berlin, Fabeckstr. 34-36, Berlin, Germany.

Chemistry Department, University of Virginia, Charlottesville, VA, 22904-4319, USA.

出版信息

Chemistry. 2019 Feb 1;25(7):1795-1805. doi: 10.1002/chem.201805372. Epub 2019 Jan 14.

DOI:10.1002/chem.201805372
PMID:30637816
Abstract

Uranium and thorium hydrides are known as functional groups for ligand stabilized complexes and as isolated molecules under matrix isolation conditions. Here, the new molecular products of the reactions of laser-ablated U and Th atoms with HCl and with HBr, namely HUCl, HUBr and HThCl, HThBr, based on their mid and far infrared spectra in solid argon, are reported. The assignment of these species is based on the close agreement between observed and calculated vibrational frequencies. The H-U and U- Cl stretching modes of HUCl were observed at 1404.6 and 323.8 cm , respectively. Using DCl instead to form DUCl gives absorption bands at 1003.1 and 314.7 cm . The corresponding bands of HThCl are 1483.8 (H-Th) and 1058.0 (D-Th), as well as 340.3 and 335.8 cm (Th- Cl), respectively. HUBr is observed at 1410.6 cm and the BP86 computed shift from HUCl is 6.2 cm in excellent agreement. The U-H stretching frequency increases from 1383.1 (HUF), 1404.6 (HUCl), 1410.6 (HUBr) to 1423.6 cm (UH) as less electronic charge is removed from the U-H bond by the less electronegative substituent. These U-H stretching frequencies follow the Mayer bond orders calculated for the three HUX molecules. A similar trend is found for the Th counterparts. Additional absorptions are assigned to the H AnX molecules (An=U, Th, X=Cl, Br) formed by the exothermic reaction of a second HX molecule with the above primary products.

摘要

铀和钍的氢化物是配体稳定配合物的功能基团,也是在基质隔离条件下作为孤立分子存在的。在这里,报告了激光烧蚀 U 和 Th 原子与 HCl 和 HBr 反应的新分子产物,即 HUCl、HUBr 和 HThCl、HThBr,其基于在固态氩中的中红外和远红外光谱。这些物种的分配是基于观察到的和计算出的振动频率之间的紧密一致性。HUCl 的 H-U 和 U-Cl 伸缩模式分别在 1404.6 和 323.8 cm 处观察到。使用 DCl 代替 HCl 形成 DUCl 会在 1003.1 和 314.7 cm 处产生吸收带。相应的 HThCl 带为 1483.8(H-Th)和 1058.0(D-Th),以及 340.3 和 335.8 cm(Th-Cl)。HUBr 在 1410.6 cm 处被观察到,从 HUCl 计算出的 BP86 位移为 6.2 cm,非常吻合。随着从 U-H 键中去除的电子电荷减少,U-H 伸缩频率从 1383.1(HUF)、1404.6(HUCl)、1410.6(HUBr)增加到 1423.6 cm(UH)。这些 U-H 伸缩频率遵循计算得到的三个 HUX 分子的 Mayer 键序。对于 Th 对应物,也发现了类似的趋势。通过与上述初级产物的放热反应形成的 H AnX 分子(An=U、Th、X=Cl、Br)的额外吸收被分配。

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