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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

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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 polymer...
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Olefin Metathesis Polymerization: Overview01:13

Olefin Metathesis Polymerization: Overview

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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 of a...
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Ziegler–Natta Chain-Growth Polymerization: Overview01:17

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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...
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Cationic Chain-Growth Polymerization: Mechanism00:57

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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...
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The conversion of alkenes to macromolecules called polymers is a reaction of high commercial importance. The structure of the polymer is defined by a repeating unit, while the terminal groups are considered insignificant. The average degree of polymerization represents the number of repeating units in the polymer molecule and is denoted by the subscript n.
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Depolymerizable Olefinic Polymers Based on Fused-Ring Cyclooctene Monomers
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可回收化加速环开放共聚变,并使聚的聚合后修饰成为可能.

Christoph Fornacon-Wood1, Luca Steiner2, Chengzhang Xu1

  • 1Makromolekulare Chemie, Universität Bayreuth, Universitätsstraße 30, Bayreuth, 95447, Germany.

Angewandte Chemie (International ed. in English)
|October 21, 2025
PubMed
概括

研究人员开发了使用环开放共聚合的新型化聚. 这些先进的材料提供了增强的性能,通过聚合后修改可调节的功能,以及在降解后的可持续回收.

关键词:
化聚合物的化聚合物.聚乙烯是聚乙烯的重要组成部分.环开放式共聚合 环开放式共聚合

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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
  • 有机化学 有机化学

背景情况:

  • 化增强了聚合物的特性,但在可降解的聚合物中尚未得到充分研究.
  • 开发具有卓越性能和功能的可降解聚合物至关重要.

研究的目的:

  • 为了合成和表征一种新的类型的化可降解聚.
  • 调查化对催化,材料性能和生命期末选择的影响.

主要方法:

  • 五醇氧化物的环开放共聚化与甲化物.
  • 分子重量,热和机械性能的表征.
  • 在散装材料,表面,薄膜和纤维上进行聚合后修饰 (PPM) 研究.
  • 用于回收的降解研究.

主要成果:

  • 合成的高分子量 (>100公斤mol-1) 的化聚烯.
  • 悬挂C6F5组加速了催化和改善了材料性能.
  • 通过高效的PPM,包括表面修改,实现可调节材料特性.
  • 在降解后,已被证明可以将定量回收为化.

结论:

  • 针对可降解聚的化提高了催化和材料性能.
  • 开发的聚合物提供了可调节的功能和可持续的寿命终结途径.
  • 这项工作为先进的功能和可降解的化材料开辟了新的途径.