首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Influence of Tacticity on Hydrophobicity of Poly(N-isopropylacrylamide): A Single Chain Molecular Dynamics Simulation Study
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Influence of Tacticity on Hydrophobicity of Poly(N-isopropylacrylamide): A Single Chain Molecular Dynamics Simulation Study

机译:立构规整度对聚(N-异丙基丙烯酰胺)疏水性的影响:单链分子动力学模拟研究

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Several pieces of experimental evidence show that the water affinity of poly(N-isopropylacrylamide), PNIPAM, decreases with the increase of the degree of isotacticity. To give a rationale to such effect we carried out atomistic molecular dynamics simulations of PNIPAM 30-mers with content of meso dyads, m, of 45% and 59%, assuming a Bernoullian dyad distribution. The single chain behavior of these stereoisomers in water was modeled at 283 and 323 K, i.e., below and above the lower critical solution temperature, LCST. Simulation results show that the dyad composition has influence on size and conformation of the oligomer below the LCST, the isotactic-rich stereoisomer preferring conformations with lower radius of gyration. With reference to the cooperative hydration model of PNIPAM, we analyzed the organization and the dynamics of water in the surroundings of the polymer. Below the LCST the number of hydrogen bonds per water molecule in the first hydration shell and the water surface concentration around PNIPAM are affected by the meso/racemo dyad ratio, showing the higher hydrophobicity of the isotactic-rich system. Above the LCST the subtle effects leading to the modulation of conformation and hydration by means of tacticity are overtaken, and the chain collapse is observed for both systems up to a similar globular state. The comparison of simulation findings of the m 45% stereoisomer with available experimental results of atactic PNIPAM highlights additional molecular details of this macromolecule in aqueous environment. The characteristic time for motion of water molecules in the PNIPAM first hydration shell at 283 K is about 34 ps, in agreement with the experimental value.
机译:几项实验证据表明,聚(N-异丙基丙烯酰胺)PNIPAM的水亲和力随全同立构规整度的增加而降低。为了给出这种效果的基本原理,我们进行了PNIPAM 30-mers的原子分子动力学模拟,假定伯努利安二联体分布,其中内消旋二联体的m分别为45%和59%。这些立体异构体在水中的单链行为是在283和323 K下模拟的,即低于和低于最低临界溶液温度LCST。模拟结果表明,二元组组成对LCST以下的低聚物的尺寸和构象有影响,富含等规度的立体异构体更倾向于构象,且回转半径较小。参考PNIPAM的协同水合作用模型,我们分析了聚合物周围水的组织和动力学。在LCST以下,第一个水合壳中每个水分子的氢键数和PNIPAM周围的水表面浓度受内消旋/外消旋二元比率的影响,表明等规富集体系的疏水性更高。在LCST上方,克服了通过立构规整度调节构象和水合作用的细微作用,并且观察到两个系统直至相似的球状状态的链塌陷。 45%m立体异构体的模拟结果与无规PNIPAM的可用实验结果的比较突出了该大分子在水环境中的其他分子细节。 PNIPAM第一水合壳中水分子在283 K处运动的特征时间约为34 ps,与实验值一致。

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