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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Charge transfer via the dative N-B bond and dihydrogen contacts. Experimental and theoretical electron density studies of small lewis acid-base adducts
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Charge transfer via the dative N-B bond and dihydrogen contacts. Experimental and theoretical electron density studies of small lewis acid-base adducts

机译:通过和式N-B键和二氢接触进行电荷转移。小路易斯酸碱加合物的实验和理论电子密度研究

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The electronic characteristics of the dative N-B bond in three Lewis acid-base adducts, hydrazine borane, hydrazine bisborane, and ammonia trifluoroborane, are analyzed by an approach combining experimental electron density determination with a broad variety of theoretical calculations. Special focus is directed to the weak dihydrogen contacts in hydrazine borane. The Atoms In Molecules partitioning scheme is complemented by additional methods like the Source Function, and the Electron Localizability Indicator. For the multipole-free theoretical models of hydrazine borane and hydrazine bisborane, a weak charge donation from Lewis base to acid of about 0.05 e is found, whereas multipole refinement of theoretical and experimental structure factors resulted in opposite signs for the Lewis acid and base fragments. For ammonia trifluoroborane, the donation from Lewis base to acid is slightly larger (about 0.13 e) in the multipole-free models, and the charges obtained by multipole refinement retain the direction of the charge donation but show quite large variations. The natural population analysis charges predict larger charge donations (~0.35 e) from the Lewis bases to the acids for the three title complexes. Although the three compounds exhibit intermolecular interactions of different types and strengths, including classical hydrogen bonds, F?H contacts and the already mentioned dihydrogen bonds, almost no charge transfer is detected between different molecules within the crystal environment. The main electronic effect of the formation of the Lewis acid-base adducts and of the crystallization is an increase in the charge separation within the ammonia/hydrazine fragments, which is supported by all investigated bond and atomic properties. The nature of the dative N-B bond is found to be mainly electrostatic, but with a substantial contribution of covalency. The F-B bonds show similarities and differences from the N-B bonds, which makes a distinction of coordinative (or dative) bonds from polar covalent interactions possible.
机译:通过结合实验电子密度测定和多种理论计算的方法,分析了三种路易斯酸碱加合物,肼基硼烷,肼基双硼烷和氨三氟硼烷中的固定N-B键的电子特性。特别关注的是肼硼烷中弱的二氢接触。分子中的原子划分方案由诸如源函数和电子可定位性指示符之类的其他方法补充。对于肼硼烷和肼双硼烷的无多极理论模型,发现路易斯碱向酸的弱电荷捐赠约为0.05 e,而理论和实验结构因子的多极精炼导致路易斯酸和碱片段的符号相反。对于三氟硼烷氨,在无多极模型中,从路易斯碱到酸的捐赠略大(约0.13 e),并且通过多极精炼获得的电荷保留了电荷捐赠的方向,但显示出很大的变化。天然种群分析电荷预测三种标题配合物从Lewis碱向酸的电荷贡献更大(约0.35 e)。尽管这三种化合物表现出不同类型和强度的分子间相互作用,包括经典的氢键,F 2 H接触和已经提到的二氢键,但在晶体环境中的不同分子之间几乎没有检测到电荷转移。路易斯酸碱加合物的形成和结晶的主要电子效应是氨/肼片段中电荷分离的增加,这由所有研究的键和原子性质所支持。发现固定N-B键的性质主要是静电的,但是对共价有很大贡献。 F-B键显示出与N-B键的相似之处和不同之处,这使得配位键(或定键)与极性共价相互作用之间的区别成为可能。

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