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Dendronized Hyperbranched Macromolecules: Soft Matter with a Novel Type of Segmental Distribution

机译:树枝化的超支化大分子:具有新型分段分布的软物质

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Dendronization of a hyperbranched polyester with different generation dendrons leads to pseudo-dendritic structures. The hyperbranched core is modified by the divergent coupling of protected monomer units to the functional groups. Compared to dendrimers, the synthetic effort is significantly less, but the properties are very close to those of high-generation dendrimers. The number of functional groups, molar mass, and rheology behavior even in the early generation (G1-G4) pseudo-dendrimers strongly resembles the behavior of dendrimers in higher generations (G5-G8). Comparison of the segmental and internal structure with perfect dendrimers is performed using SANS, dynamic light scattering and viscosity analysis, microscopy and molecular dynamics simulation. The interpretation of the results reveals unique structural characteristics arising from lower segmental density of the core, which turns into a soft nano-sphere with a smooth surface even in the first generation.
机译:具有不同世代树突的超支化聚酯的树突化导致伪树突结构。超支化核心通过受保护的单体单元与官能团的发散偶联而改性。与树枝状聚合物相比,合成工作量显着减少,但是其性能非常接近于高代树枝状聚合物。甚至在早期(G1-G4)假树状聚合物中,官能团的数量,摩尔质量和流变行为也与更高世代(G5-G8)中的树状聚合物的行为非常相似。使用SANS,动态光散射和粘度分析,显微镜和分子动力学模拟对链段和内部结构与完美的树枝状分子进行比较。结果的解释揭示了由于较低的核部分密度而产生的独特结构特征,即使在第一代中,其也变成了具有光滑表面的柔软纳米球。

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