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関連する概念動画

ortho–para-Directing Activators: –CH3, –OH, –⁠NH2, –OCH301:11

ortho–para-Directing Activators: –CH3, –OH, –⁠NH2, –OCH3

6.6K
All ortho–para directors, excluding halogens, are activating groups. These groups donate electrons to the ring, making the ring carbons electron-rich. Consequently, the reactivity of the aromatic ring towards electrophilic substitution increases. For instance, the nitration of anisole is about 10,000 times faster than the nitration of benzene. The electron-donating effect of the methoxy group in anisole activates the ortho and para positions on the ring and stabilizes the corresponding...
6.6K
Directing and Steric Effects in Disubstituted Benzene Derivatives01:18

Directing and Steric Effects in Disubstituted Benzene Derivatives

3.4K
When disubstituted benzenes undergo electrophilic substitution, the product distribution depends on the directing effect of both substituents. When the directing effects of both substituents reinforce each other, a single product is obtained. For example, bromination of p-nitrotoluene occurs ortho to the methyl group and meta to the nitro group, which is the same position, resulting in a single product. However, if the directing effects of the two groups oppose each other, the...
3.4K
Directing Effect of Substituents: meta-Directing Groups01:09

Directing Effect of Substituents: meta-Directing Groups

5.2K
Substituents on the benzene ring that direct an incoming electrophile to undergo substitution at the meta position are called meta directors. All meta directors either have a positive charge on the atom directly bonded to the ring or a partial positive charge. These groups function by withdrawing electrons from the ring through inductive and resonance effects. Consider the carbocation intermediates formed upon the addition of an electrophile on nitrobenzene at the...
5.2K
Regioselectivity of Electrophilic Additions to Alkenes: Markovnikov's Rule02:17

Regioselectivity of Electrophilic Additions to Alkenes: Markovnikov's Rule

15.0K
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...
15.0K
[3,3] Sigmatropic Rearrangement of 1,5-Dienes: Cope Rearrangement01:21

[3,3] Sigmatropic Rearrangement of 1,5-Dienes: Cope Rearrangement

2.9K
The Cope rearrangement is classified as a [3,3] sigmatropic shift in 1,5-dienes, leading to a more stable, isomeric 1,5-diene. The reaction involves a concerted movement of six electrons, four from two π bonds and two from a σ bond, via an energetically favorable chair-like transition state.
2.9K
ortho–para-Directing Deactivators: Halogens01:24

ortho–para-Directing Deactivators: Halogens

6.1K
Halogens are ortho–para directors. They are more electronegative than carbon. Therefore, as ring substituents, they can withdraw electrons through the inductive effect and deactivate the aromatic ring towards electrophilic substitution. Halogens also have an electron-donating resonance effect on the ring, which influences the orientation of the incoming electrophile. If an electrophile attacks at the ortho or the para position, the halogen donates electrons and stabilizes the intermediate...
6.1K

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Updated: Oct 22, 2025

Synthesis of Information-bearing Peptoids and their Sequence-directed Dynamic Covalent Self-assembly
09:34

Synthesis of Information-bearing Peptoids and their Sequence-directed Dynamic Covalent Self-assembly

Published on: February 6, 2020

7.5K

遠隔置換効果による回転アミドの幾何学と反応性を調節する

Mizhi Xu, McKinley K Paul, Krista K Bullard

    Journal of the American Chemical Society
    |August 31, 2021
    PubMed
    まとめ

    研究者は遠隔置換剤を用いてトウィストアミドの反応性を調節した. 電子提供グループはアミド歪みと核愛置換率を増加させ,置換剤依存反応機構を明らかにした.

    科学分野:

    • 有機化学
    • 反応メカニズム
    • 合成化学

    背景:

    • 歪んだアミドの反応性は,伝統的にその歪みと関連しています.
    • 古典的なブリッジ型バイサイクルアミドは,アミドの歪みを修正する上で制限があります.
    • アミドの幾何学と反応性を微調整するために新しい戦略が必要である.

    研究 の 目的:

    • 歪んだアミドの幾何学と反応性の調節を調査する.
    • 単一のアミド基板に対する遠隔置換効果の影響を調査する.
    • 環開き反応における置換された歪みアミドの運動学とメカニズムを理解する.

    主な方法:

    • 基本状態の幾何学を決定する計算計算.
    • 歪んだアミド誘導体のライブラリを作成します.
    • アルキル化/ハリドリバウンドリング開き反応の運動学と機械学的研究.

    主要な成果:

    • 遠隔置換剤は,歪んだアミドの幾何学と反応性を著しく調節する.
    • 電子ドナー置換物はアミド結合の歪みと反応速度を増加させる.
    • 核愛置換の反応速度は,ほぼ2次元の範囲に及ぶ.

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    Author Spotlight: In Silico Creation and Impact of Carbonylated Amino Acids on Protein Structure and Function
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    Last Updated: Oct 22, 2025

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    Published on: April 26, 2024

    574
  • 速度制限のステップは,置換物の性質に依存する.
  • 結論:

    • 遠隔置換効果は,歪んだアミドの性質を制御するための強力なツールを提供します.
    • アミドの歪みは電子提供代謝体強度と直接相関する.
    • 反応経路と効率は,置換剤,溶媒の極性,ハライドイオンによって影響を受けます.