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Supramolecular Dimerization in a Polymer Melt from Small-Angle X-ray Scattering and Rheology: A Miscible Model System

机译:从小角度X射线散射和流变学研究的聚合物熔体中的超分子二聚化:可混溶模型系统

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摘要

We present a structural and dynamic study on the simplest supramolecular hetero-association, recently investigated by the authors to prepare architectural homogeneous structures in the melt state, based on the bio-inspired hydrogen-bonding of thymine/diaminotriazine (thy–DAT) base-pairs. In the combination with an amorphous low T poly(butylene oxide) (PBO), no micellar structures are formed, which is expected for nonpolar polymers because of noncompatibility with the highly polar supramolecular groups. Instead, a clear polymer-like transient architecture is retrieved. This makes the heterocomplementary thy–DAT association an ideal candidate for further exploitation of the hydrogen-bonding ability in the bulk for self-healing purposes, damage management in rubbers or even the development of easily processable branched polymers with built-in plasticizer. In the present work, we investigate the temperature range from T + 20 °C to T + 150 °C of an oligomeric PBO using small-angle X-ray scattering (SAXS) and linear rheology on the pure thy and pure DAT monofunctionals and on an equimolar mixture of thy/DAT oligomers. The linear rheology performed at low temperature is found to correspond to fully closed-state dimeric configurations. At intermediate temperatures, SAXS probes the equilibrium between open and closed states of the thy–DAT mixtures. The temperature-dependent association constant in the full range between open and closed H-bonds and an enhancement of the monomeric friction coefficient due to the groups is obtained. The thy–DAT association in the melt is more stable than the DAT–DAT, whereas the thy–thy association seems to involve additional long-lived interactions.
机译:我们提出了最简单的超分子异缔合的结构和动力学研究,作者最近对其进行了研究,以基于胸腺嘧啶/二氨基三嗪(thy-DAT)的生物启发氢键,制备处于熔融态的均质结构。对。与无定形的低T聚环氧丁烷(PBO)结合使用时,不会形成胶束结构,这是非极性聚合物所期望的,因为它与高极性超分子基团不相容。取而代之的是,检索到清晰的类似于聚合物的瞬态结构。这使得thy-DAT杂互补体成为进一步利用本体中的氢键能力进行自我修复,管理橡胶损伤甚至开发具有内置增塑剂的易加工支化聚合物的理想人选。在目前的工作中,我们使用小角度X射线散射(SAXS)和线性流变学研究纯thy和纯DAT单官能团以及在低聚物PBO的T + 20°C到T + 150°C的温度范围。 thy / DAT低聚物的等摩尔混合物。发现在低温下进行的线性流变学对应于完全闭合状态的二聚体构型。在中间温度下,SAXS探测thy-DAT混合物的打开和关闭状态之间的平衡。获得了在打开和关闭的H键之间的整个范围内与温度相关的缔合常数,以及由于这些基团而提高了单体摩擦系数。熔体中的thy-DAT缔合比DAT-DAT更为稳定,而thy-thy缔合似乎涉及其他长期存在的相互作用。

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