奇拉罗玻利化复合物的立体化学不刚性:作为异构化过渡状态的西格玛-复合物
Marius V Câmpian1, Eric Clot, Odile Eisenstein
1Department of Chemistry, University of York, York YO10 5DD, UK.
Journal of the American Chemical Society
|March 11, 2008
概括
复合物激活皮纳科尔博兰中的B-H键,形成玻利化. 量化了异构体之间的内分子交换,发现由于硬质因子,二化物复合体的能量障碍低于二化物复合体.
科学领域:
- 有机金属化学 有机金属化学
- 摄影化学的使用.
- 计算化学的计算化学
背景情况:
- 半三明治复合物是有机合成中的关键催化剂.
- B-H 键激活是化反应中的关键步骤.
- 了解反应机制和能量障碍对于催化剂设计至关重要.
研究的目的:
- 为了研究由罗复合体激活皮纳科尔博兰的B-H键.
- 描述形成的异构体及其分子内交换.
- 为了确定交换过程的动力和热力学参数.
主要方法:
- 复合体与皮纳科尔博兰的光化学反应.
- 1D 1H EXSY光谱仪用于确定相互转换率.
- 密度函数理论 (DFT) 和QM/MM (ONIOM) 计算用于能量屏障分析.
主要成果:
- 产生了两种可区分的玻利化异构体,并经历了分子内交换.
- 实验性相互转换速率产生了80-83kJ/mol的激活度.
- 计算研究发现了西格玛-B-H结合的过渡状态,其能量障碍低于二化物.
结论:
- 这项研究阐明了复合体中B-H键激活和同位素交换的机制.
- 固体相互作用显著影响交换屏障,有利于化形成,而不是二化.
- 实验和计算数据提供了对反应路径的全面了解.
相关概念视频
Regioselectivity and Stereochemistry of Hydroboration
A significant aspect of hydroboration–oxidation is the regio- and stereochemical outcome of the reaction.
Hydroboration proceeds in a concerted fashion with the attack of borane on the π bond, giving a cyclic four-centered transition state. The –BH2 group is bonded to the less substituted carbon and –H to the more substituted carbon. The concerted nature requires the simultaneous addition of –H and –BH2 across the same face of the alkene giving syn stereochemistry.
Hydroboration proceeds in a concerted fashion with the attack of borane on the π bond, giving a cyclic four-centered transition state. The –BH2 group is bonded to the less substituted carbon and –H to the more substituted carbon. The concerted nature requires the simultaneous addition of –H and –BH2 across the same face of the alkene giving syn stereochemistry.
Prochirality
The concept of prochirality leads to the nomenclature of the individual faces of a molecule and plays a crucial role in the enantioselective reaction. It is a concept where two or more achiral molecules react to produce chiral products. A typical process is the reaction of an achiral ketone to generate a chiral alcohol. Here, the achiral reactant reacts with an achiral reducing agent, sodium borohydride, to generate an equimolar mixture of the chiral enantiomers of the product. For example, an...
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Stereoisomerism of Cyclic Compounds
In this lesson, we delve into the role of ring conformation and its stability, which determines the spatial arrangement and, consequently, the molecular symmetry and stereoisomerism of cyclic compounds. 1,2-Dimethylcyclohexane is used as a case study to evaluate the possible number of stereoisomers. Here, given the multiple (n = 2) chiral centers, there are 2n = 4 possible configurations that lack a plane of symmetry, as the ring skeleton exists in a non-planar chair conformation. In addition,...
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Molecules that possess multiple chiral centers can afford a large number of stereoisomers. For instance, while some molecules like 2-butanol have one chiral center, defined as a tetrahedral carbon atom with four different substituents attached, several molecules like butane-2,3-diol have multiple chiral centers. A simple formula to predict the number of stereoisomers possible for a molecule with n chiral centers is 2n. However, there can be a lower number where some of the stereoisomers are...
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Halogenation to form a new chiral center:


