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首页> 外文期刊>The Journal of Chemical Physics >Effects of stereochemistry and copolymerization on the LCST of PNIPAm
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Effects of stereochemistry and copolymerization on the LCST of PNIPAm

机译:立体化学和共聚对肺炎疫苗的影响

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摘要

Poly(N-isopropylacrylamide) (PNIPAm) is a smart polymer that presents a lower critical transition temperature (LCST) of 305 K. Interestingly, this transition point falls within the range of the human body temperature, making PNIPAma highly suitable candidate for bio-medical applications. However, it is sometimes desirable to have a rather flexible tuning of the LCST of these polymers to further increase their range of applications. In this work, we use all-atom molecular dynamics simulations to study the LCST of PNIPAm-based (co-)polymers. We study different molecular architectures where the polymer sequences are tuned either by modifying its stereochemistry or by the co-polymerization of PNIPAm with acrylamide (Am) units. Our analysis connects global polymer conformations with the microscopic intermolecular interactions. These findings suggest that the collapse of a PNIPAm chain upon heating is dependent on the hydration structure around the monomers, which is strongly dependent on the tacticity and the presence of more hydrophilic acrylamide monomers. Our results are found to be in good agreement with the existing experimental data. Published by AIP Publishing.
机译:聚(N-异丙基丙烯酰胺)(泊丙基)是一种智能聚合物,其呈现了305k的临界转变温度(LCST),有趣的是,这种过渡点落入人体温的范围内,使PNIPAMA高度合适的生物候选者医疗应用。然而,有时希望具有相当灵活地调整这些聚合物的LCST,以进一步增加它们的应用范围。在这项工作中,我们使用全原子分子动力学模拟来研究基于泊普(CO)聚合物的LCST。我们研究了通过改变其立体化学或通过用丙烯酰胺(AM)单元的丙氨酸的共聚来调节聚合物序列的不同分子架构。我们的分析通过微观分子间相互作用连接全局聚合物构象。这些发现表明,加热时迁移迁移级联依赖于单体周围的水化结构,这迫切地取决于术语和更亲水的丙烯酰胺单体的存在。我们的结果与现有的实验数据达成良好。通过AIP发布发布。

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