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関連する概念動画

Fast Reactions01:27

Fast Reactions

Fast reactions occurring in times shorter than the time needed to mix reactants pose a unique challenge for investigation. In a liquid-phase continuous-flow system, reactants A and B are swiftly pushed into the mixing chamber, where mixing occurs within 1 ms. The reaction mixture then flows through an observation tube, and one measures light absorption to determine species concentrations at various points of the tube. This method is most appropriate when relatively large volumes of reactants...
Measuring Reaction Rates03:09

Measuring Reaction Rates

Polarimetry finds application in chemical kinetics to measure the concentration and reaction kinetics of optically active substances during a chemical reaction. Optically active substances have the capability of rotating the plane of polarization of linearly polarized light passing through them—a feature called optical rotation. Optical activity is attributed to the molecular structure of substances. Normal monochromatic light is unpolarized and possesses oscillations of the electrical field in...
Step-Growth Polymerization: Overview01:03

Step-Growth Polymerization: Overview

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...
Polymers02:34

Polymers

The word polymer is derived from the Greek words “poly” which means “many” and “mer” which means “parts”. Polymers are long chains of molecules composed of repeating units of smaller molecules, known as monomers. They either occur naturally, such as DNA and proteins, or can be constructed synthetically, like plastics. They have varied structural characteristics, such as linear chains, branched chains, or complex networks, that contribute to the properties that they exhibit. Additionally,...
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...
Free-Radical Chain Reaction and Polymerization of Alkenes02:35

Free-Radical Chain Reaction and Polymerization of Alkenes

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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関連する実験動画

Updated: Jul 12, 2026

Ethylene Polymerizations Using Parallel Pressure Reactors and a Kinetic Analysis of Chain Transfer Polymerization
07:28

Ethylene Polymerizations Using Parallel Pressure Reactors and a Kinetic Analysis of Chain Transfer Polymerization

Published on: November 27, 2015

ポリマー加工における反応動力学と構造発展の同時研究

W Bras, G E Derbyshire, D Bogg

    Science (New York, N.Y.)
    |February 17, 1995
    PubMed
    まとめ

    この研究では,加工中にポリマー構造の形成を観察するために先進的な技術を使用しました. 水素結合ではなく,相分離の熱力学が,ポリウレタンの構造開発を推進している.

    科学分野:

    • ポリマーサイエンスの科学
    • マテリアルサイエンス 材料科学
    • 物理化学 物理化学

    背景:

    • ポリマー構造の発達を理解することは,材料の性質を制御するために不可欠です.
    • ポリウレタンは,加工条件の影響を受けた複雑な構造を示します.
    • 運動と構造の分析を同時に行うことで,ポリマーの形成に関する洞察が得られます.

    研究 の 目的:

    • 加工中のセグメントブロックコポリウレタンにおける構造開発の原動力を調査する.
    • 先進的な分析方法を使用して,構造の進化と反応動力学を相関させる.
    • ポリウレタン形質を制御する基本的メカニズムを解明する.

    主な方法:

    • 構造分析のため,時間解像度シンクロトロン放射線小角X線散射 (SR-SAXS) を利用した.
    • フォリエ変換赤外線光譜法 (FTIR) を使って,反応運動をモニタリングする.
    • モデルセグメントブロックコポリウレタンにSR-SAXSとFTIRのアプローチの組み合わせを適用しました.

    主要な成果:

    • 段階分離の熱力学が構造開発の主要な原動力であることを確認しました.
    • 水素結合が相分離と比較して二次的役割を果たしていることを実証した.

    さらに関連する動画

    Real-time Monitoring of Reactions Performed Using Continuous-flow Processing: The Preparation of 3-Acetylcoumarin as an Example
    09:56

    Real-time Monitoring of Reactions Performed Using Continuous-flow Processing: The Preparation of 3-Acetylcoumarin as an Example

    Published on: November 18, 2015

    Synthesis of Cyclic Polymers and Characterization of Their Diffusive Motion in the Melt State at the Single Molecule Level
    06:55

    Synthesis of Cyclic Polymers and Characterization of Their Diffusive Motion in the Melt State at the Single Molecule Level

    Published on: September 26, 2016

    関連する実験動画

    Last Updated: Jul 12, 2026

    Ethylene Polymerizations Using Parallel Pressure Reactors and a Kinetic Analysis of Chain Transfer Polymerization
    07:28

    Ethylene Polymerizations Using Parallel Pressure Reactors and a Kinetic Analysis of Chain Transfer Polymerization

    Published on: November 27, 2015

    Real-time Monitoring of Reactions Performed Using Continuous-flow Processing: The Preparation of 3-Acetylcoumarin as an Example
    09:56

    Real-time Monitoring of Reactions Performed Using Continuous-flow Processing: The Preparation of 3-Acetylcoumarin as an Example

    Published on: November 18, 2015

    Synthesis of Cyclic Polymers and Characterization of Their Diffusive Motion in the Melt State at the Single Molecule Level
    06:55

    Synthesis of Cyclic Polymers and Characterization of Their Diffusive Motion in the Melt State at the Single Molecule Level

    Published on: September 26, 2016

  • 処理を最終的なポリマー形態学とリンクする時間解析データを提供しました.
  • 結論:

    • 段階分離の熱力学的駆動は,ポリウレタン構造の形成を決定する.
    • ポリマー加工を理解するために,運動学と構造学の研究は不可欠です.
    • この方法論は,ポリウレタンにおける構造-特性関係の理解を前進させる.