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相关概念视频

Molecular Weight of Step-Growth Polymers01:08

Molecular Weight of Step-Growth Polymers

2.7K
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...
2.7K
Polymer Classification: Architecture01:14

Polymer Classification: Architecture

3.7K
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...
3.7K
Polymers: Molecular Weight Distribution01:10

Polymers: Molecular Weight Distribution

4.6K
For any given polymer, the weight average molecular weight (Mw) is higher than, if not equal to, the number average molecular weight (Mn). The only situation in which the weight average molecular weight and the number average molecular weight are equal is when a polymer consists only of chains with equal molecular weight. However, this never happens in a synthetic polymer, since it is difficult to control the polymerization process up to a molecular level with accuracy to a hundred percent.
4.6K
Radical Chain-Growth Polymerization: Chain Branching01:17

Radical Chain-Growth Polymerization: Chain Branching

2.4K
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...
2.4K
Polymers: Defining Molecular Weight01:01

Polymers: Defining Molecular Weight

3.7K
Unlike small molecules with definite molecular weights, polymers are a mixture of individual polymer chains of varying lengths, each with a unique molecular weight.  So, the molecular weight of a polymer is expressed as an average value based on the average size of the polymer chains. The two most common forms of averages used for polymers are the number average molecular weight and weight average molecular weight.
The number average molecular weight (Mn) is the summation of the number...
3.7K
Polymers02:34

Polymers

40.3K
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...
40.3K

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相关实验视频

Updated: Jan 9, 2026

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

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聚合物的链长度依赖的相关分子运动.

Matthew Reynolds1, Daniel L Baker1, Peter D Olmsted2

  • 1University of Leeds, School of Physics and Astronomy, Leeds LS2 9JT, United Kingdom.

Physical review letters
|December 5, 2025
PubMed
概括

聚合物的动态异质性取决于链条的灵活性和长度. 高度灵活的聚合物表现出独立于分子重量的相关运动,而不那么灵活的聚合物表现出与放松动态相关的复杂行为.

科学领域:

  • 聚合物物理 聚合物物理
  • 材料科学是一种材料科学.
  • 凝聚物质物理学 凝聚物质物理学

背景情况:

  • 动态异质性 (DHs) 对于理解玻璃成型材料至关重要.
  • DHs与聚合物特性 (如链的灵活性和长度) 之间的关系尚未完全理解.

研究的目的:

  • 研究聚合物中的动态异质性 (DHs) 是如何受到链的灵活性和分子重量的影响的.
  • 探索聚合物中DH长度尺度和放松动态之间的联系.

主要方法:

  • 聚合物动态的计算建模和模拟.
  • 在玻璃过渡温度 (Tg) 上分析单质相关运动.
  • 通过不同聚合物灵活性和分子重量的DH行为比较.

主要成果:

  • 高柔性聚合物在Tg时表现出不变数量的相关单体 (Nc),在Tg时约为500个,不论分子量如何.
  • 较不灵活的聚合物表现出三种模式的Nc(M) 行为,与Tg和链形状相关.
  • 在甲酸中发现了Nc(M) 与结构性 (α) 和二次性 (β) 放松激活障碍的比率之间的直接联系.

结论:

  • DH长度尺度与α放松所需的β放松事件数量直接相关.

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Optical Tweezers to Study RNA-Protein Interactions in Translation Regulation
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Optical Tweezers to Study RNA-Protein Interactions in Translation Regulation

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相关实验视频

Last Updated: Jan 9, 2026

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

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DNA Nanotubes as a Versatile Tool to Study Semiflexible Polymers
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DNA Nanotubes as a Versatile Tool to Study Semiflexible Polymers

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Optical Tweezers to Study RNA-Protein Interactions in Translation Regulation
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Optical Tweezers to Study RNA-Protein Interactions in Translation Regulation

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  • 链的灵活性显著影响了聚合物中动态异质性的性质和分子量依赖性.
  • 观察到的Nc和放松障碍之间的相关性表明玻璃成型聚合物中合作运动的一般机制.