首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >New route to 1-thia-closo-dodecaborane(11), closo-1-SB11H11, and its halogenation reactions. The effect of the halogen on the dipole moments and the NMR spectra and the importance of spin-orbit coupling for the B-11 chemical shifts
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New route to 1-thia-closo-dodecaborane(11), closo-1-SB11H11, and its halogenation reactions. The effect of the halogen on the dipole moments and the NMR spectra and the importance of spin-orbit coupling for the B-11 chemical shifts

机译:1-硫代-氯代十二硼烷(11),closo-1-SB11H11及其卤化反应的新途径。卤素对偶极矩和NMR谱的影响以及自旋轨道耦合对B-11化学位移的重要性

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摘要

Reaction between nido-B10H14 (1) and elemental sulfur in CHCl3, in the presence of Et3N at room temperature, followed by treatment with Et3N center dot BH3 at 170-190 degrees C, resulted in the isolation of closo-1-SB11H11 (2) in 50% yield. Selected electrophilic halogenation reactions of compound 2 led to the isolation of a series of monoltalogenated derivatives of general constitution 12-X-closo-1-SB11H10 (12-X-2, where X = Cl, Br, and I). The structures of 12-Cl-2 and 12-I-2 were determined by an X-ray diffraction analysis and the structures of all compounds were geometry optimised at the RMP2(fc)/6-31G* level. The constitution of all compounds is consistent with the results of mass spectrometry and multinuclear (H-1 and B-11) spectroscopy complemented by two-dimensional [B-11-B-11]-COSY and H-1{B-11(selective)} NMR measurements. Experimental B-11 chemical shifts generally show acceptable agreement with theoretical values calculated by GIAO methods, but spin-orbit coupling must be included for nuclei bearing heavy-atom substituents such as Br or I. The dipole moments determined for the B12-X bonds show similarities to those of aliphatic C-X bonds and confirm unambiguously the B12 -> S dipole moment orientation in the SB11 cage.
机译:室温下在Et3N存在下,Nido-B10H14(1)与CHCl3中的元素硫之间的反应,然后在170-190摄氏度下用Et3N中心点BH3处理,分离出closo-1-SB11H11(2 ),收率为50%。化合物2的选定亲电子卤化反应导致分离出一系列具有一般结构的12-X-closo-1-SB11H10(12-X-2,其中X = Cl,Br和I)的单缩醛衍生物。通过X射线衍射分析确定12-Cl-2和12-I-2的结构,并在RMP2(fc)/ 6-31G *水平对所有化合物的结构进行几何优化。所有化合物的组成均与质谱和多核(H-1和B-11)光谱学以及二维[B-11-B-11] -COSY和H-1 {B-11(选择性)NMR测量。实验B-11的化学位移通常与GIAO方法计算的理论值显示出可接受的一致性,但是对于带有重原子取代基(如Br或I)的核,必须包括自旋轨道耦合。对于B12-X键确定的偶极矩表明与脂族CX键具有相似性,并明确证实了SB11笼中的B12-> S偶极矩取向。

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