School of Life Science and Technology, Tokyo Institute of Technology, Yokohama 226-8501, Japan.
A.N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, 28 Vavilov Str., 119991 Moscow, Russia.
Molecules. 2021 Mar 2;26(5):1321. doi: 10.3390/molecules26051321.
Bis(carboranyl)amides 1,1'-μ-(CHNH(O)C(CH)-1,2-CBH) ( = 0, 1) were prepared by the reactions of the corresponding carboranyl acyl chlorides with ethylenediamine. Crystal molecular structure of 1,1'-μ-(CHNH(O)C-1,2-CBH) was determined by single crystal X-ray diffraction. Treatment of bis(carboranyl)amides 1,1'-μ-(CHNH(O)C(CH)-1,2-CBH) with ammonium or cesium fluoride results in partial deboronation of the -carborane cages to the -carborane ones with formation of [7,7'(8')-μ-(CHNH(O)C(CH)-7,8-CBH)]. The attempted reaction of [7,7'(8')-μ-(CHNH(O)CCH-7,8-CBH)] with GdCl in 1,2-dimethoxy- ethane did not give the expected metallacarborane. The stability of different conformations of Gd-containing metallacarboranes has been estimated by quantum-chemical calculations using [3,3-μ-DME-3,3'-Gd(1,2-CBH)] as a model. It was found that in the most stable conformation the CH groups of the dicarbollide ligands are in -orientation with respect to the DME ligand, while any rotation of the dicarbollide ligand reduces the stability of the system. This makes it possible to rationalize the design of carborane ligands for the synthesis of gadolinium metallacarboranes on their base.
双(碳硼烷)酰胺 1,1'-μ-(CHNH(O)C(CH)-1,2-CBH) ( = 0, 1) 是通过相应的碳硼烷酰氯与乙二胺反应制备的。通过单晶 X 射线衍射确定了 1,1'-μ-(CHNH(O)C-1,2-CBH) 的晶体分子结构。用氯化铵或氟化铯处理双(碳硼烷)酰胺 1,1'-μ-(CHNH(O)C(CH)-1,2-CBH) 会导致部分去硼化,形成 [7,7'(8')-μ-(CHNH(O)C(CH)-7,8-CBH)]。试图用 GdCl 在 1,2-二甲氧基乙烷中与 [7,7'(8')-μ-(CHNH(O)CCH-7,8-CBH)] 反应,但没有得到预期的金属碳硼烷。使用 [3,3-μ-DME-3,3'-Gd(1,2-CBH)] 作为模型,通过量子化学计算估计了含 Gd 的金属碳硼烷的不同构象的稳定性。结果发现,在最稳定的构象中,二碳硼烷配体的 CH 基团相对于 DME 配体呈 -取向,而二碳硼烷配体的任何旋转都会降低体系的稳定性。这使得基于它们设计用于合成钆金属碳硼烷的碳硼烷配体成为可能。