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

机译:环状聚合物的合成及其在单分子水平熔融态扩散运动的表征

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摘要

We demonstrate a method for the synthesis of cyclic polymers and a protocol for characterizing their diffusive motion in a melt state at the single molecule level. An electrostatic self-assembly and covalent fixation (ESA-CF) process is used for the synthesis of the cyclic poly(tetrahydrofuran) (poly(THF)). The diffusive motion of individual cyclic polymer chains in a melt state is visualized using single molecule fluorescence imaging by incorporating a fluorophore unit in the cyclic chains. The diffusive motion of the chains is quantitatively characterized by means of a combination of mean-squared displacement (MSD) analysis and a cumulative distribution function (CDF) analysis. The cyclic polymer exhibits multiple-mode diffusion which is distinct from its linear counterpart. The results demonstrate that the diffusional heterogeneity of polymers that is often hidden behind ensemble averaging can be revealed by the efficient synthesis of the cyclic polymers using the ESA-CF process and the quantitative analysis of the diffusive motion at the single molecule level using the MSD and CDF analyses.
机译:我们展示了一种用于合成环状聚合物的方法,以及用于表征在单分子水平上处于熔融状态的扩散运动的协议。静电自组装和共价固定(ESA-CF)工艺用于合成环状聚四氢呋喃(聚四氢呋喃)。通过在环链中掺入荧光团单元,使用单分子荧光成像技术可以观察到处于熔融状态的单个环状聚合物链的扩散运动。通过均方位移(MSD)分析和累积分布函数(CDF)分析的组合来定量表征链的扩散运动。环状聚合物表现出不同于其线性对应物的多模扩散。结果表明,可以通过使用ESA-CF工艺高效合成环状聚合物,并使用MSD和MSD对单分子水平的扩散运动进行定量分析,来揭示通常隐藏在整体平均背后的聚合物扩散异质性。 CDF分析。

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