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相关概念视频

Polymer Classification: Architecture01:14

Polymer Classification: Architecture

2.8K
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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Anionic Chain-Growth Polymerization: Overview01:20

Anionic Chain-Growth Polymerization: Overview

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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,...
2.1K
Radical Chain-Growth Polymerization: Chain Branching01:17

Radical Chain-Growth Polymerization: Chain Branching

2.0K
The skeletal structure of polymers synthesized via radical polymerization is always branched. For example, the polymerization of ethylene by radical polymerization results in a low-density grade of polyethylene with a heavily branched skeletal structure. Here, the radical site abstracts hydrogen from the growing chain, and the radical site shifts from the end (a primary carbon center) to anywhere within the growing chain (a secondary carbon center). Consequently, the part of the chain from the...
2.0K
Types of Step-Growth Polymers: Polyesters01:20

Types of Step-Growth Polymers: Polyesters

2.3K
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...
2.3K
Ziegler–Natta Chain-Growth Polymerization: Overview01:17

Ziegler–Natta Chain-Growth Polymerization: Overview

3.4K
Ziegler–Natta polymerization is another form of addition or chain‐growth polymerization used for synthesizing linear polymers over branched polymers. The catalyst used for polymerization is the Ziegler–Natta catalyst, named after Karl Ziegler and Giulio Natta, who developed it in 1953. This catalyst is an organometallic complex of titanium tetrachloride and triethyl aluminum, with the active form of the catalyst being an alkyl titanium compound. Using the Ziegler–Natta...
3.4K
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

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Depolymerizable Olefinic Polymers Based on Fused-Ring Cyclooctene Monomers
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Depolymerizable Olefinic Polymers Based on Fused-Ring Cyclooctene Monomers

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基于拓网络结构和动态结合的高性能分支聚合物弹性体

Zhenpeng Zhang1, Xiaolin Jiang1, Yuanhao Ma1

  • 1South China University of Technology, Guangzhou 501641, China.

ACS applied materials & interfaces
|August 30, 2023
PubMed
概括

研究人员通过创建悬挂链的独特梯度分布来开发出一种高性能弹性体. 这种创新的结构同时增强机械强度,性,阻尼和自我愈合特性.

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
  • 纳米技术 纳米技术

背景情况:

  • 由于固有的属性冲突 (例如,强度与性),在弹性体中实现高性能是具有挑战性的.
  • 传统的分支聚合物往往会受到减少的机械性能的影响.

研究的目的:

  • 设计和制造一种高性能弹性体,克服传统的财产权交易.
  • 为集成的结构和功能弹性体开发一种新的材料战略.

主要方法:

  • 一个独特的悬挂链结构与质子捐赠者和受体的合成.
  • 具有悬挂链和动态键的梯度分布的弹性体的制造.
  • 微/纳米尺度聚合状态和由键驱动的微相分离的表征.

主要成果:

  • 实现了高强度 (27.5 MPa) 和性 (121.9 MJ·m−3).
  • 证明了卓越的自我愈合效率 (94.8%) 和缓冲性能 (tan δ ≥ 0.4 在广泛的温度范围,高达144°C).
  • 由交织的悬挂链组成的"密集积累"结构显著改善了机械性能.

结论:

  • 在托波架构的聚合物中,悬挂链的梯度分布成功地解决了传统分支聚合物的局限性.
关键词:
缓解性能 缓解性能 缓解性能悬挂链的梯度分布 悬挂链的梯度分布聚氨弹性体聚氨弹性体它具有自我愈合的功能.强度和性的强度和性.

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Synthesis of Programmable Main-chain Liquid-crystalline Elastomers Using a Two-stage Thiol-acrylate Reaction
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Fabrication of a Bioactive, PCL-based "Self-fitting" Shape Memory Polymer Scaffold
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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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  • 这种材料设计为开发具有同时增强机械,阻尼和自我愈合功能的先进弹性体提供了新的策略.