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関連する概念動画

Radical Substitution: Hydrogenolysis of Alkyl Halides with Tributyltin Hydride01:26

Radical Substitution: Hydrogenolysis of Alkyl Halides with Tributyltin Hydride

1.8K
Radical substitution reactions can be used to remove functional groups from molecules. The hydrogenolysis of alkyl halides is one such reaction, where the weak Sn–H bond in tributyltin hydride reacts with alkyl halides to form alkanes. Here, the reagent Bu3SnH yields tributyltin halide as a byproduct.
The bonds formed in this reaction are stronger than the bonds broken, making it energetically favorable. The reaction follows a radical chain mechanism similar to radical halogenation...
1.8K
Radical Reactivity: Nucleophilic Radicals01:16

Radical Reactivity: Nucleophilic Radicals

2.1K
Radicals adjacent to electron-donating groups are called nucleophilic radicals. These radicals readily react with electrophilic alkenes. The SOMO–LUMO interactions are the driving force for the reaction, where the high-energy SOMO of the electron-rich, nucleophilic radicals interacts with the low-energy LUMO of the electron-deficient, electrophilic alkenes. Such SOMO–LUMO interactions are the basis of reactive radical traps, affecting the selectivity in radical reactions. For...
2.1K
Electrophilic 1,2- and 1,4-Addition of X2 to 1,3-Butadiene01:14

Electrophilic 1,2- and 1,4-Addition of X2 to 1,3-Butadiene

2.4K
Electrophilic addition of halogens to alkenes proceeds via a cyclic halonium ion to form a 1,2-dihalide or a vicinal dihalide.
2.4K
Radical Substitution: Allylic Bromination01:27

Radical Substitution: Allylic Bromination

5.0K
In organic synthesis, the formation of products can be altered by changing the reaction conditions. For example, a dibromo addition product is formed when propene is treated with bromine at room temperature. In contrast, propene undergoes allylic substitution in non-polar solvents at high temperatures to give 3-bromopropene. In order to avoid the addition reaction, the bromine concentration must be kept as low as possible throughout the reaction. This can be achieved using N-bromosuccinimide...
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Alkenes via Reductive Coupling of Aldehydes or Ketones: McMurry Reaction01:22

Alkenes via Reductive Coupling of Aldehydes or Ketones: McMurry Reaction

1.9K
The radical dimerization of ketones or aldehydes gives vicinal diols through a pinacol coupling reaction. However, the behavior of titanium metals used for the reaction as a source of electrons is unusual. When the reaction is carried out in the presence of titanium, diols can be isolated at low temperatures. Else titanium further reacts with diols, forming alkenes through the McMurry reaction.
1.9K
Radical Reactivity: Concentration Effects01:20

Radical Reactivity: Concentration Effects

1.5K
In a radical reaction, the concentration of starting materials governs the selectivity of a radical. For example, the reaction between an alkyl halide and an alkene, in the presence of tin hydride and AIBN, begins with the generation of a tin radical. The generated radical then abstracts halogen from the alkyl halide, producing an alkyl radical. This alkyl radical can either react with tin hydride, yielding an alkane, or add to an alkene, generating a nitrile-stabilized radical, eventually...
1.5K
  1. ホーム
  2. Cu-エレクトロカタリスはアルケンのバイシナル ((difluoromethylation) を可能にする:zn ((cf2h) 2(dmpu) 2の二極性役割を解明する
  1. ホーム
  2. Cu-エレクトロカタリスはアルケンのバイシナル ((difluoromethylation) を可能にする:zn ((cf2h) 2(dmpu) 2の二極性役割を解明する

関連する実験動画

Facile Preparation of 2Z,4E-Dienamides by the Olefination of Electron-deficient Alkenes with Allyl Acetate
06:46

Facile Preparation of 2Z,4E-Dienamides by the Olefination of Electron-deficient Alkenes with Allyl Acetate

Published on: June 21, 2017

7.4K

Cu-エレクトロカタリスはアルケンのバイシナル ((difluoromethylation) を可能にする:Zn ((CF2H) 2(DMPU) 2の二極性役割を解明する

Seonyoung Kim1, Hyunwoo Kim1,2

  • 1Department of Chemistry, Pohang University of Science and Technology (POSTECH), Pohang 37673, Republic of Korea.

Journal of the American Chemical Society
|July 30, 2024

PubMed で要約を見る

まとめ
この要約は機械生成です。

研究者らは,アルケンの近隣の二酸化酸化 (difluoromethylation) のための新しい銅触媒電気化学的方法を開発した. この戦略により,重要な二酸化メチル化化合物の合成が可能になり,薬剤発見とADMEの性質が向上します.

さらに関連する動画

Application of Elemental Lanthanides in the Selective C-F Activation of Trifluoromethylated Benzofulvenes Providing Access to Various Difluoroalkenes
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Application of Elemental Lanthanides in the Selective C-F Activation of Trifluoromethylated Benzofulvenes Providing Access to Various Difluoroalkenes

Published on: July 28, 2018

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Mizoroki-Heck Cross-coupling Reactions Catalyzed by Dichloro{bis[1,1',1''-phosphinetriyltripiperidine]}palladium Under Mild Reaction Conditions
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Mizoroki-Heck Cross-coupling Reactions Catalyzed by Dichloro{bis[1,1',1''-phosphinetriyltripiperidine]}palladium Under Mild Reaction Conditions

Published on: March 20, 2014

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関連する実験動画

Facile Preparation of 2Z,4E-Dienamides by the Olefination of Electron-deficient Alkenes with Allyl Acetate
06:46

Facile Preparation of 2Z,4E-Dienamides by the Olefination of Electron-deficient Alkenes with Allyl Acetate

Published on: June 21, 2017

7.4K
Application of Elemental Lanthanides in the Selective C-F Activation of Trifluoromethylated Benzofulvenes Providing Access to Various Difluoroalkenes
10:10

Application of Elemental Lanthanides in the Selective C-F Activation of Trifluoromethylated Benzofulvenes Providing Access to Various Difluoroalkenes

Published on: July 28, 2018

6.4K
Mizoroki-Heck Cross-coupling Reactions Catalyzed by Dichloro{bis[1,1',1''-phosphinetriyltripiperidine]}palladium Under Mild Reaction Conditions
11:44

Mizoroki-Heck Cross-coupling Reactions Catalyzed by Dichloro{bis[1,1',1''-phosphinetriyltripiperidine]}palladium Under Mild Reaction Conditions

Published on: March 20, 2014

25.4K

科学分野:

  • 有機化学
  • 薬剤化学
  • カタリシス

背景:

  • ディフルオロメチル群 (CF2H) は,ADME特性を改善する薬剤発見において重要なバイオエステルである.
  • 薬剤においては,副流体二酸化化が重要であるが,一般的合成方法は欠けている.
  • 現存する二酸化ルオメチル化方法は,特に近隣の二酸化ルオメチル化化合物には限られている.

研究 の 目的:

  • アルケンの近辺二酸化フッ素メチル化のための一般的な合成方法を開発する.
  • 電気化学と銅の触媒を効率的な二酸化塩素化のために利用する.
  • 薬剤の機能化の後期段階におけるこの方法の適用を実証する.

主な方法:

  • アルケンのビシンアル (二酸化酸化) のための銅電触媒戦略.
  • 電気化学を用いたZn ((CF2H) 2 ((DMPU) 2) の酸化により,CF2Hラジカルが生成される.
  • 連続的二酸化塩素化のためのCu (III) 中間物質を含むメカニズム研究.

主要な成果:

  • 銅による電気触媒による近隣の二酸化フッ素メチル化の成功開発.
  • 簡単に手に入る前駆体からCF2Hの生成を証明した.
  • ソタロールやディピヴェフリンなどの薬剤で 晚期バイオイソステリック置換による戦略を検証した.
  • 結論:

    • 開発された電解法により,近隣の二酸化化化合物への一般的な経路が提供される.
    • この戦略は薬剤化学者に 薬剤の性質を改善するための貴重なツールを提供します
    • 後期段階の機能化におけるメソッドの有用性は,薬剤発見への潜在的な影響を強調しています.