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相关概念视频

Olefin Metathesis Polymerization: Ring-Opening Metathesis Polymerization (ROMP)01:16

Olefin Metathesis Polymerization: Ring-Opening Metathesis Polymerization (ROMP)

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Ring-opening metathesis polymerization or ROMP involves strained cycloalkenes as starting materials. The mechanism of ROMP proceeds by reacting cycloalkene with Grubbs catalyst to give metallacyclobutane intermediate which undergoes a ring-opening reaction to form new carbene. The new carbene reacts with another molecule of cycloalkene. Repetition of these steps leads to the formation of an unsaturated open-chain polymer product. All these steps are reversible, however, relieving the ring...
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Types of Step-Growth Polymers: Polyesters01:20

Types of Step-Growth Polymers: Polyesters

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The introduction of polyesters has brought major development to the textile industry. The wrinkle-free behavior of polyester blends has eliminated the need for starching and ironing clothes.
Polyesters are commonly prepared from terephthalic acid and ethylene glycol; the crude product is known as poly(ethylene terephthalate) or PET. However, polyesters are synthesized industrially by transesterification of dimethyl terephthalate with ethylene glycol at 150 °C. The two reactants and the...
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Olefin Metathesis Polymerization: Acyclic Diene Metathesis (ADMET)00:53

Olefin Metathesis Polymerization: Acyclic Diene Metathesis (ADMET)

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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...
1.9K
Olefin Metathesis Polymerization: Overview01:13

Olefin Metathesis Polymerization: Overview

2.0K
Recently, the development of olefin metathesis polymerization advanced the field of polymer synthesis. Simply put, the reorganization of substituents on their double bonds between two olefins in the presence of a catalyst is known as the olefin metathesis reaction. The use of metathesis reaction for polymer synthesis is called olefin metathesis polymerization.
Ruthenium-based Grubbs catalyst is the most commonly used catalyst for olefin metathesis polymerization. Grubbs catalyst consists...
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Step-Growth Polymerization: Overview01:03

Step-Growth Polymerization: Overview

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Step-growth or condensation polymerization is a stepwise reaction of bi or multifunctional monomers to form long-chain polymers. As all the monomers are reactive, most of the monomers are consumed at the early stages of the reaction to form small chains of reactive oligomers, which then combine to form long polymer chains in the late stages. Hence, the reaction has to proceed for a long time to achieve high molecular weight polymers.
Many natural and synthetic polymers are produced by...
3.4K
Radical Chain-Growth Polymerization: Overview01:10

Radical Chain-Growth Polymerization: Overview

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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...
2.4K

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Depolymerizable Olefinic Polymers Based on Fused-Ring Cyclooctene Monomers
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从热聚的环闭解聚合物中直接回收单体.

Chihui Zheng1, Gadi Slor1, Youwei Ma1

  • 1Department Institute of Materials, École Polytechnique Fédérale de Lausanne (EPFL), Lausanne 1015, Switzerland.

ACS macro letters
|December 7, 2024
PubMed
概括

研究人员从循环碳酸盐 (ACC) 和氧循环碳酸盐 (AoCC) 开发出一种新的聚碳酸盐耐热剂. 这种材料允许通过脱聚合直接回收单体,简化了热回收.

科学领域:

  • 聚合物化学 聚合物化学
  • 材料科学 材料科学 材料科学
  • 可持续化学 可持续化学

背景情况:

  • 耐热聚合物回收是具有挑战性的,因为它们的交叉连接结构.
  • 在没有复杂的分离的情况下从热中直接回收单体是非常理想的,但很困难.
  • 化学可回收热的传统回收方法通常涉及复杂的分离过程.

研究的目的:

  • 合成一种具有增强性质和易于脱聚合的新型聚碳酸热固体.
  • 为了从热的脱聚合物中直接回收单体.
  • 为了实现耐热材料的可持续回收.

主要方法:

  • 环碳酸盐 (ACC) 与环碳酸盐 (AoCC) 的联合聚合.
  • 由此产生的聚碳酸盐通过紫外线照射与四醇化合物交叉结合.
  • 交联热固体的环闭脱聚合,以回收单体.

主要成果:

  • 合成的交叉链聚碳酸具有改进的热和机械性能.
  • 通过脱聚合实现了ACC及其二元的直接回收,绕过了复杂分离.
  • 获得的单体回收率在74.7%至91.7%之间.
  • 证明成功地将回收的单体重聚合成高质量的聚碳酸盐.

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

  • 开发的聚碳酸热固体为直接的单体回收和回收提供了可行的途径.
  • 这种方法简化了热的回收利用,减少了对环境的影响.
  • 回收的单体可以重复使用,促进聚合物材料的循环经济.