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相关概念视频

Catalysis02:50

Catalysis

The presence of a catalyst affects the rate of a chemical reaction. A catalyst is a substance that can increase the reaction rate without being consumed during the process. A basic comprehension of a catalysts’ role during chemical reactions can be understood from the concept of reaction mechanisms and energy diagrams.
Radical Chain-Growth Polymerization: Mechanism01:09

Radical Chain-Growth Polymerization: Mechanism

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 species into the...
Ziegler–Natta Chain-Growth Polymerization: Overview01:17

Ziegler–Natta Chain-Growth Polymerization: Overview

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 catalyst, high molecular...
Olefin Metathesis Polymerization: Overview01:13

Olefin Metathesis Polymerization: Overview

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

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

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...
Heterogeneous Catalysis01:22

Heterogeneous Catalysis

Heterogeneous catalysis involves a catalyst in a different phase from the reactants. It is a process where the catalyst and the reactants are in distinct phases, typically solid and gas or liquid.Most heterogeneous catalysts are metals, metal oxides, or acids. The list includes transition metals like iron (Fe), cobalt (Co), nickel (Ni), palladium (Pd), platinum (Pt), chromium (Cr), manganese (Mn), tungsten (W), silver (Ag), and copper (Cu). These metals possess partially vacant d orbitals that...

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相关实验视频

Updated: Jul 6, 2026

GENPLAT: an Automated Platform for Biomass Enzyme Discovery and Cocktail Optimization
11:38

GENPLAT: an Automated Platform for Biomass Enzyme Discovery and Cocktail Optimization

Published on: October 24, 2011

由伯格曼循环化启动的激进聚合.

Joseph D Rule1, Scott R Wilson, Jeffrey S Moore

  • 1Department of Chemistry and School of Chemical Sciences, University of Illinois, Urbana, IL 61801, USA.

Journal of the American Chemical Society
|October 23, 2003
PubMed
概括

一个通过伯格曼循环生成的新型二极端启动器,有效地启动了基极聚合. 高分子量聚合物主要通过单基生长形成,链转移剂增强聚合率.

科学领域:

  • 聚合物化学 聚合物化学
  • 有机化学 有机化学
  • 极端聚合方式 极端聚合方式

背景情况:

  • 迪拉基尔是反应性中间体,在启动聚合过程中具有潜在的应用.
  • 伯格曼循环化是一种已知的方法,用于从enediynes中生成二极根.
  • 了解聚合中的二基基态行为对于控制聚合物的特性至关重要.

研究的目的:

  • 为了研究使用伯格曼循环化衍生的二基作为激素聚合的发起者.
  • 确定不同单体的聚合机制和效率.
  • 阐明链转移和分子内终结在二基激素启动的聚合过程中的作用.

主要方法:

  • 合成3,4-基甲基-3--1,5-烯及其伯格曼循环生成二基.
  • 用各种单体 (例如甲基酸盐,烯酸) 进行激进聚合实验.
  • 分析聚合物分子量,聚合率和识别小分子副产品.

主要成果:

  • 迪拉基有效地启动了聚合,特别是甲基烯酸盐,产生了高分子量聚合物.
  • 聚合物传播主要是通过单线性机制发生的,得到了聚合率和聚合度数据的支持.
  • 添加链转移剂显著增加了烯的聚合率 (>20倍).

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Utilization of Stop-flow Micro-tubing Reactors for the Development of Organic Transformations
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Utilization of Stop-flow Micro-tubing Reactors for the Development of Organic Transformations

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Versatile CO2 Transformations into Complex Products: A One-pot Two-step Strategy
07:36

Versatile CO2 Transformations into Complex Products: A One-pot Two-step Strategy

Published on: November 9, 2019

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Last Updated: Jul 6, 2026

GENPLAT: an Automated Platform for Biomass Enzyme Discovery and Cocktail Optimization
11:38

GENPLAT: an Automated Platform for Biomass Enzyme Discovery and Cocktail Optimization

Published on: October 24, 2011

Utilization of Stop-flow Micro-tubing Reactors for the Development of Organic Transformations
13:09

Utilization of Stop-flow Micro-tubing Reactors for the Development of Organic Transformations

Published on: January 4, 2018

Versatile CO2 Transformations into Complex Products: A One-pot Two-step Strategy
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Versatile CO2 Transformations into Complex Products: A One-pot Two-step Strategy

Published on: November 9, 2019

  • 鉴定出了与二极根内分子终结相一致的小分子产物.
  • 结论:

    • 伯格曼循环化衍生的二基是激素聚合的有效发起者.
    • 高聚合物形成是通过单基生长进行的,通常是在链转移之后,由于二基链的快速分子内终结.
    • 该研究提供了对二基自终结途径和链转移剂对聚合动学的影响的见解.