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相关概念视频

Regioselectivity and Stereochemistry of Hydroboration02:36

Regioselectivity and Stereochemistry of Hydroboration

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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...
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The rate of acid-catalyzed hydration of alkenes depends on the alkene's structure, as the presence of alkyl substituents at the double bond can significantly influence the rate.
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Regioselectivity of Electrophilic Additions to Alkenes: Markovnikov's Rule02:17

Regioselectivity of Electrophilic Additions to Alkenes: Markovnikov's Rule

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If a set of reactants can yield multiple constitutional isomers, but one of the isomers is obtained as the major product, the reaction is said to be regioselective. In such reactions, bond formation or breaking is favored at one reaction site over others.
The hydrohalogenation of an unsymmetrical alkene can yield two haloalkane products, depending on which vinylic carbon takes up the halogen. However, one product usually predominates, where hydrogen adds to the vinylic carbon bearing the...
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Electrophilic addition of hydrogen halides, HX (X = Cl, Br or I) to alkenes forms alkyl halides as per Markovnikov's rule, where the hydrogen gets added to the less substituted carbon of the double bond. Hydrohalogenation of alkynes takes place in a similar manner, with the first addition of HX forming a vinyl halide and the second giving a geminal dihalide.
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Alkynes to Aldehydes and Ketones: Hydroboration-Oxidation02:47

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Introduction
One of the convenient methods for the preparation of aldehydes and ketones is via hydration of alkynes. Hydroboration-oxidation of alkynes is an indirect hydration reaction in which an alkyne is treated with borane followed by oxidation with alkaline peroxide to form an enol that rapidly converts into an aldehyde or a ketone. Terminal alkynes form aldehydes, whereas internal alkynes give ketones as the final product.
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Hydroboration-Oxidation of Alkenes03:08

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In addition to the oxymercuration–demercuration method, which converts the alkenes to alcohols with Markovnikov orientation, a complementary hydroboration-oxidation method yields the anti-Markovnikov product. The hydroboration reaction, discovered in 1959 by H.C. Brown, involves the addition of a B–H bond of borane to an alkene giving an organoborane intermediate. The oxidation of this intermediate with basic hydrogen peroxide forms an alcohol.
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H催化区域和选择性形式的基化

Subhash Garhwal1, Yuyang Dong1, Binh Khanh Mai2

  • 1Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.

Journal of the American Chemical Society
|May 9, 2024
PubMed
概括
此摘要是机器生成的。

一种新型的铜化物 (CuH) 催化方法使得乙烯酸具有高度反选择性. 这种方法产生丰富的α-乙醇,是化物,醇和氨基的多功能前体.

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科学领域:

  • 有机化学
  • 催化剂
  • 不对称的合成

背景情况:

  • 铜化物催化提供了对酶选择性转化的一种途径.
  • 在合成有价值的有机分子方面,水合成型和相关反应至关重要.

研究的目的:

  • 使用铜化物催化,开发一种高度对乙烯的选择性形式的化.
  • 建立一种温和的易斯酸促进的方法来产生电友.
  • 合成富含的α-乙烯及其衍生物.

主要方法:

  • 铜化物 (CuH) 催化
  • 使用三叶酸作为温和的易斯酸激活二氧化甲基酸.
  • 乙烯基的酸化.
  • 密度函数理论 (DFT) 的计算.

主要成果:

  • 实现了对乙烯基的高度反选择性形式化.
  • 产生的α-乙烯产品具有良好的产量,具有独特的分支区域选择性.
  • 证明了乙醇转化为化物,酒精和氨基的有效转化,并保持了纯度.
  • DFT研究阐明了关键C-C键的背面SE2型机制.

结论:

  • 开发的CuH催化方案提供了有效的缩α-乙醇.
  • 该方法适用于广泛的乙烯基基底.
  • 合成的乙作为多功能中间体,在保持酶体完整性的同时进一步功能化.