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相关概念视频

Reduction of Alkenes: Asymmetric Catalytic Hydrogenation02:17

Reduction of Alkenes: Asymmetric Catalytic Hydrogenation

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Catalytic hydrogenation of alkenes is a transition-metal catalyzed reduction of the double bond using molecular hydrogen to give alkanes. The mode of hydrogen addition follows syn stereochemistry.
The metal catalyst used can be either heterogeneous or homogeneous. When hydrogenation of an alkene generates a chiral center, a pair of enantiomeric products is expected to form. However, an enantiomeric excess of one of the products can be facilitated using an enantioselective reaction or an...
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Introduction
Like alkenes, alkynes can be reduced to alkanes in the presence of transition metal catalysts such as Pt, Pd, or Ni. The reaction involves two sequential syn additions of hydrogen via a cis-alkene intermediate.
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Reduction of Alkenes: Catalytic Hydrogenation02:13

Reduction of Alkenes: Catalytic Hydrogenation

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Alkenes undergo reduction by the addition of molecular hydrogen to give alkanes. Because the process generally occurs in the presence of a transition-metal catalyst, the reaction is called catalytic hydrogenation.
Metals like palladium, platinum, and nickel are commonly used in their solid forms — fine powder on an inert surface. As these catalysts remain insoluble in the reaction mixture, they are referred to as heterogeneous catalysts.
The hydrogenation process takes place on the...
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Alkynes to Aldehydes and Ketones: Hydroboration-Oxidation02:47

Alkynes to Aldehydes and Ketones: Hydroboration-Oxidation

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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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Unlike the easy catalytic hydrogenation of an alkene double bond, hydrogenation of a benzene double bond under similar reaction conditions does not take place easily. For example, in the reduction of stilbene, the benzene ring remains unaffected while the alkene bond gets reduced. Hydrogenation of an alkene double bond is exothermic and a favorable process. In contrast, to hydrogenate the first unsaturated bond of benzene, an energy input is needed; that is, the process is endothermic. This is...
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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 stereochemistry.
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高活性阴阳 (II) 化催化剂

Drew M Hood1, Ryan A Johnson1, Alex E Carpenter2

  • 1Department of Chemistry, Louisiana State University, Baton Rouge, LA 70803, USA.

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概括

新的阴阳催化剂具有高活性和选择性,可以接近的性能. 这些催化剂具有较长的寿命和稳定性,特别是对于内部基.

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科学领域:

  • 有机金属化学
  • 催化剂
  • 有机合成

背景情况:

  • 传统上使用或催化剂.
  • 催化剂的活性很高,但价格昂贵.
  • 现有的催化剂在活性和选择性方面存在限制.

研究的目的:

  • 开发具有增强活性和选择性的新型催化剂.
  • 将新催化剂的性能与现有的工业标准进行比较.
  • 研究这些催化剂对不同类型的基的区域选择性.

主要方法:

  • 聚酸 (II) 双酸化合物的合成.
  • 在基化过程中对催化活性进行评估.
  • 对各种基的线性到分支 (L:B) 区域选择性的分析.
  • 评估催化剂的稳定性和使用寿命.

主要成果:

  • 新的阴阳性催化剂的活性明显高于传统的催化剂.
  • 催化剂的活性接近昂贵的-催化剂.
  • 观察到简单线性基的低L:B区域选择性.
  • 由于异构化和固体效应,在具有分支的内部基中实现了高L:B区域选择性.
  • 催化剂具有较长的寿命和耐降解性.

结论:

  • 电离双催化剂代表了水合形成的有前途的进步.
  • 这些催化剂为催化剂提供了具有成本效益的替代品.
  • 这些新系统可以实现对内部基因的定制选择性.