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関連する概念動画

Anionic Chain-Growth Polymerization: Overview01:20

Anionic Chain-Growth Polymerization: Overview

2.2K
The polymerization process that involves carbanion as an intermediate is called anionic polymerization. It is also a type of addition or chain-growth polymerization. Anionic polymerization gets initiated by a strong nucleophile such as an organolithium or a Grignard reagent. The most commonly used initiator for anionic polymerization is butyl lithium. Monomers involved in anionic polymerization must possess a vinyl group bonded to one or two electron-withdrawing groups. For instance,...
2.2K
Anionic Chain-Growth Polymerization: Mechanism01:04

Anionic Chain-Growth Polymerization: Mechanism

2.1K
The mechanism for anionic chain-growth polymerization involves initiation, propagation, and termination steps. In the initiation step, a nucleophilic anion, such as butyl lithium, initiates the polymerization process by attacking the π bond of the vinylic monomer. As a result, a carbanion, stabilized by the electron‐withdrawing group, is generated. The resulting carbanion acts as a Michael donor in the propagation step and attacks the second vinylic monomer, which acts as a Michael...
2.1K
Olefin Metathesis Polymerization: Acyclic Diene Metathesis (ADMET)00:53

Olefin Metathesis Polymerization: Acyclic Diene Metathesis (ADMET)

2.0K
Acyclic diene metathesis polymerization or ADMET polymerization involves cross-metathesis of terminal dienes, such as 1,8-nonadiene, to give linear unsaturated polymer and ethylene. As ADMET is a reversible process, the formed ethylene gas must be removed from the reaction mixture to complete the polymerization process.
Similar to cross-metathesis, ADMET also involves the formation of metallacyclobutane intermediate by [2+2] cycloaddition of one of the double bonds of a terminal diene with...
2.0K
Cationic Chain-Growth Polymerization: Mechanism00:57

Cationic Chain-Growth Polymerization: Mechanism

2.4K
The cationic polymerization mechanism consists of three steps: initiation, propagation, and termination. In the initiation step of the polymerization process, the π bond of a monomer gets protonated by the Lewis acid catalyst, which is formed from boron trifluoride and water. The protonation of the π bond generates a carbocation stabilized by the electron‐donating group. In the propagation step, the π bond of the second monomer acts as a nucleophile and attacks the...
2.4K
Radical Chain-Growth Polymerization: Overview01:10

Radical Chain-Growth Polymerization: Overview

2.7K
Chain-growth or addition polymerization is successive addition reactions of monomers with a polymer chain. In radical chain-growth polymerization, the reaction proceeds via a free-radical intermediate. The free radical is formed from radical initiators, which spontaneously generate free radicals by homolytic fission. Organic peroxides (such as dibenzoyl peroxide, as shown in Figure 1) or azo compounds are popular radical initiators. A low concentration ratio of radical initiator to monomer is...
2.7K
Radical Chain-Growth Polymerization: Mechanism01:09

Radical Chain-Growth Polymerization: Mechanism

2.8K
The radical chain-growth polymerization mechanism consists of three steps: initiation, propagation, and termination of polymerization. The polymerization initiates when a free radical generated from the radical initiator adds to the unsaturated bond in the monomer. The unpaired electron of the free radical and one π electron in the unsaturated bond creates a σ bond between the free radical and the monomer. As a result, the other π electron in the unsaturated bond converts this...
2.8K

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関連する実験動画

Updated: Sep 11, 2025

Microwave-assisted Functionalization of Polyethylene glycol and On-resin Peptides for Use in Chain Polymerizations and Hydrogel Formation
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Microwave-assisted Functionalization of Polyethylene glycol and On-resin Peptides for Use in Chain Polymerizations and Hydrogel Formation

Published on: October 29, 2013

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メタクリラートのアニオンリバーシブル添加分裂連鎖移転ポリメリゼーション

Paige E Jacky1, Madison A Neukirch1, Brett P Fors1

  • 1Cornell University, Ithaca, New York 14853, United States.

Journal of the American Chemical Society
|August 11, 2025
PubMed
まとめ

この研究では,メタクリラートに対するアニオンの可逆性添加-断片化-連鎖移転 (RAFT) ポリメリゼーションを導入する. このより安全で室温に適合する方法は,より少ない熱性反応剤を使用し,ポリマー合成をより良く制御します.

科学分野:

  • ポリマー化学
  • 有機合成
  • 材料科学

背景:

  • メタクリラートのアニオン性ポリメリゼーションは制御が可能ですが,危険な反応剤と低温が必要です.
  • これらのポリメリゼーションの安全性,実用性,スケーラビリティの改善は極めて重要です.

研究 の 目的:

  • メタクリラートに対するより安全で実用的なアニオンポリメリゼーション方法を開発する.
  • ピロフォリック反応剤への依存を軽減し,より高い反応温度を可能にします.
  • 制御されたポリメリゼーションを実現するために 新しいチェーン転送メカニズムを使用します.

主な方法:

  • アニオンリバーシブル・アディション・フラグメンテーション・チェーン・トランスファー (RAFT) ポリメリゼーションを使用した.
  • エチル2・フォーミル2・フェニルブタノアートは鎖移転剤として使用された.
  • 増殖エノラート鎖末端とCTAの間の可逆アルドール反応が利用された.

主要な成果:

  • 様々なメタクリレットの制御されたポリメリゼーションが達成された.
  • 反応性アルキルリチウムイニシアター量を減らすことが必要でした.
  • 反応は従来の方法と比較して高温で実施された.

さらに関連する動画

Synthesis of Programmable Main-chain Liquid-crystalline Elastomers Using a Two-stage Thiol-acrylate Reaction
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Synthesis of Programmable Main-chain Liquid-crystalline Elastomers Using a Two-stage Thiol-acrylate Reaction

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Atom Transfer Radical Polymerization of Functionalized Vinyl Monomers Using Perylene as a Visible Light Photocatalyst
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Atom Transfer Radical Polymerization of Functionalized Vinyl Monomers Using Perylene as a Visible Light Photocatalyst

Published on: April 22, 2016

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関連する実験動画

Last Updated: Sep 11, 2025

Microwave-assisted Functionalization of Polyethylene glycol and On-resin Peptides for Use in Chain Polymerizations and Hydrogel Formation
15:33

Microwave-assisted Functionalization of Polyethylene glycol and On-resin Peptides for Use in Chain Polymerizations and Hydrogel Formation

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Synthesis of Programmable Main-chain Liquid-crystalline Elastomers Using a Two-stage Thiol-acrylate Reaction
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Synthesis of Programmable Main-chain Liquid-crystalline Elastomers Using a Two-stage Thiol-acrylate Reaction

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Atom Transfer Radical Polymerization of Functionalized Vinyl Monomers Using Perylene as a Visible Light Photocatalyst
06:49

Atom Transfer Radical Polymerization of Functionalized Vinyl Monomers Using Perylene as a Visible Light Photocatalyst

Published on: April 22, 2016

11.9K
  • 安定した,分離可能なアルデヒド鎖の末端が得られた.
  • 結論:

    • 開発されたアニオン型RAFTポリメリゼーションは,メタクリlate合成のためのより安全でよりスケーラブルな代替案を提供します.
    • この方法は,制御されたポリマー構造と機能的末端群を可能にします.
    • アルデヒド鎖の末端は,ブロックコポリマー合成などのさらなるポリマー改変を可能にします.