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相关概念视频

Polymer Classification: Architecture01:14

Polymer Classification: Architecture

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Polymers are classified as linear or branched on the basis of their chain architecture. The polymer chains in linear polymers have a long chain-like structure with minimal to no branching at all. Even if a polymer features large substituent groups on the monomer, which appear as branches to the skeleton, it is not considered a branched polymer. A branched polymer contains secondary polymer chains that arise from the main polymer chain. The branching occurs when the polymer growth shifts from...
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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...
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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...
2.2K
Molecular Weight of Step-Growth Polymers01:08

Molecular Weight of Step-Growth Polymers

2.2K
Step growth polymerization involves bi or multifunctional monomers. Bifunctional monomers react to form linear step growth polymers, whereas multifunctional monomers react to form non-linear or branched polymers.
As the step-growth polymerization involves step-wise condensation of monomers, the molecular weight also builds up eventually. Consequently, high molecular weight polymers are obtained at the late stages of the polymerization, where 99% of monomers have been consumed.
The extent of the...
2.2K
Polymer Classification: Stereospecificity01:26

Polymer Classification: Stereospecificity

2.4K
Polymerization generates chiral centers along the entire backbone of a polymer chain. Accordingly, the stereochemistry of the substituent group has a significant effect on polymer properties. Polymers formed from monosubstituted alkene monomers feature chiral carbons at every alternate position in the polymer backbone. Relative to the predominant orientation of substituents at the adjacent chiral carbons, the polymer can exist in three different configurations: isotactic, syndiotactic, and...
2.4K
Olefin Metathesis Polymerization: Overview01:13

Olefin Metathesis Polymerization: Overview

2.1K
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...
2.1K

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相关实验视频

Updated: Jul 5, 2025

Fabrication of a Bioactive, PCL-based "Self-fitting" Shape Memory Polymer Scaffold
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Fabrication of a Bioactive, PCL-based "Self-fitting" Shape Memory Polymer Scaffold

Published on: October 23, 2015

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基于植物油的热响应形状记忆双固化聚合物.

Rokas Petrauskas1, Sigita Grauzeliene1, Jolita Ostrauskaite1

  • 1Department of Polymer Chemistry and Technology, Kaunas University of Technology, Radvilenu Rd. 19, LT-50254 Kaunas, Lithuania.

Materials (Basel, Switzerland)
|January 11, 2024
PubMed
概括

研究人员使用双固化方法从植物油中开发了新的热响应形状记忆聚合物. 这些可持续的聚合物表现出良好的形状回收,为先进的应用提供了潜力.

科学领域:

  • 聚合物科学 聚合物科学
  • 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:

  • 热响应形状记忆聚合物 (SMPs) 提供可逆变形能力,由温度波动触发.
  • 植物油是聚合物合成的可持续,生物可再生原料.
  • 从可再生资源开发SMP对于环保意识的材料创新至关重要.

研究的目的:

  • 合成使用植物油作为主要成分的新型热敏SMP.
  • 采用双固化技术,以实现可定制的聚合物特性.
  • 研究植物油基聚合物在形状记忆应用中的潜力.

主要方法:

  • 聚合物的合成使用烯酸环氧化大豆油,环氧化亚麻油和环氧化驼油.
  • 应用一种双固化技术,涉及激进光聚合和用m-xylylenediamine进行热电离子聚合.
  • 在不同的聚合条件下研究固化动力学的风湿学分析.
  • 对合成聚合物的机械和热性能进行评估.

主要成果:

  • 双固化过程显著增强了聚合物的修真学,机械和热性质.
  • 植物油基聚合物表现出优异的形状记忆特性,回收率为100%.
  • 固化动力学有效地分析了激进光聚合,热电离子聚合和双固化系统.
关键词:
卡梅琳娜油 卡梅琳娜油点击反应,点击反应.双固化 双固化 双固化亚麻油 亚麻油是一种形状记忆 形状记忆 形状记忆豆油是大豆油中的一种.

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结论:

  • 双固化是一种有效的策略,用于增强植物油基SMP的性能.
  • 合成的聚合物表现出高的形状回收,表明它们适合于先进的应用.
  • 这项研究突出了使用可生物再生植物油创造高性能形状记忆材料的潜力.