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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Atomic scale characterization of the conformational dynamics of a thermo-sensitive and a non-thermo-sensitive oligomer using vibrational spectra obtained from molecular dynamics
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Atomic scale characterization of the conformational dynamics of a thermo-sensitive and a non-thermo-sensitive oligomer using vibrational spectra obtained from molecular dynamics

机译:使用从分子动力学获得的振动光谱对热敏和非热敏低聚物的构象动力学进行原子尺度表征

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摘要

Molecular dynamics simulations (MD) are used to calculate the vibrational spectra of a thermo-sensitive oligomer, namely, poly(N-isopropylacrylamide) (PNIPAM) and a non-thermo-sensitive oligomer, namely, poly(acrylamide) (PAAM) and characterize the atomic scale conformations. Despite the structural similarity between the two polymers, the response of PNIPAM and PAAM to a thermal stimulus is widely different; a coil-to-globule transition is observed for PNIPAM above a lower critical solution temperature (LCST) of 305 K whereas the same is absent in PAAM. Simulations in both the cases are performed above and below the LCST of PNIPAM, namely at 278 K and 310 K, to evaluate the effect of temperature on the polymer conformations. The vibrational spectra of bonds involving atoms from the polymer backbone and the various side-groups (amide I, amide II, and isopropyl group of PNIPAM and amide I and amide II group of PAAM) of the polymers were analyzed to study the conformational changes in the polymer. The differences in the vibrational spectra are used to understand the dynamics of conformational transitions in the two polymers and identify the changes in the relative interactions between various atoms in the backbone and in the side groups of the polymer with water at two different temperatures, namely at 278 K and 310 K. The systematic trends in the observed peak intensities and frequency shifts at the low, medium, and high frequency end of the spectrum for the various atoms in the two polymers are rationalized on the basis of bond-lengths, local coordination, strength of hydrogen bonding, and neighboring solvation environment. The analysis of the vibrational spectra for amide I and amide II regions of PNIPAM suggests a coil-to-globule transition in going from 278 K to 310 K. The differences are evaluated in terms of the strength, stability, and structure of the hydrogen-bond network between polymer and polymer and between polymer and water. Comparison of the vibrational spectra of isopropyl groups in PNIPAM at 278 K and 310 K suggests dehydration of the isopropyl moieties at 310 K. In the case of PNIPAM, we observe that polymer-water interactions are dominant below the LCST whereas polymer-polymer interactions dominate above the LCST. On the other hand, the vibrational spectra of amide I and amide II group of PAAM, at 278 K and 310 K, do not show any significant difference in terms of the interactions between polymer and polymer and interactions between polymer and water. Analysis of the peak intensities, of the amide II stretching band, observed in the frequency range 3500-3700 cm ~(-1) suggests that the fraction of bonded and non-bonded hydrogen atoms are similar at both 278 K and 310 K. This indicates that the interactions between polymer and polymer and between polymer and water are similar at both the temperatures. The interactions between PAAM and its surrounding environment are found to be unaffected as the temperature is raised from 278 K to 310 K. Comparisons with experimental studies are made where possible. Our study provides useful insights into the nature of various inter-molecular interactions and their role in influencing the atomic scale conformational dynamics in oligomers.
机译:分子动力学模拟(MD)用于计算热敏性低聚物即聚(N-异丙基丙烯酰胺)(PNIPAM)和非热敏性低聚物即聚(丙烯酰胺)(PAAM)的振动光谱。表征原子尺度构象。尽管两种聚合物在结构上相似,但是PNIPAM和PAAM对热刺激的反应却大不相同。对于高于305 K的较低临界溶液温度(LCST)的PNIPAM,观察到了线圈到球的转变,而在PAAM中则没有。在两种情况下的仿真都在PNIPAM的LCST之上和之下进行,即在278 K和310 K下进行,以评估温度对聚合物构象的影响。分析了涉及聚合物主链和各个侧基(PNIPAM的酰胺I,酰胺II和异丙基以及PAAM的酰胺I和酰胺II基团)上原子的键的振动光谱,以研究聚合物中的构象变化。聚合物。振动光谱中的差异用于了解两种聚合物中构象转变的动力学,并确定在两个不同温度(即,在90°C和60°C)下,聚合物的主链和侧基中的各个原子与水之间的相对相互作用的变化。 278 K和310K。根据键长,局部配位,合理化了两种聚合物中各个原子在低,中和高频端观察到的峰强度和频移的系统趋势,氢键的强度以及邻近的溶剂化环境。对PNIPAM的酰胺I和酰胺II区的振动光谱分析表明,从278 K到310 K的线圈到小球过渡。对氢的强度,稳定性和结构进行了评估聚合物与聚合物之间以及聚合物与水之间的键网络。比较278 K和310 K时PNIPAM中异丙基的振动光谱,表明310 K时异丙基部分脱水。在PNIPAM的情况下,我们观察到在LCST以下聚合物与水的相互作用占主导,而聚合物与聚合物的相互作用占主导高于LCST。另一方面,PAAM的酰胺I和酰胺II基团在278 K和310 K处的振动光谱在聚合物与聚合物之间的相互作用以及聚合物与水之间的相互作用方面没有显示任何显着差异。分析在3500-3700 cm〜(-1)频率范围内观察到的酰胺II拉伸带的峰强度,表明键合和非键合氢原子的分数在278 K和310 K上都相似。表明在两种温度下聚合物与聚合物之间以及聚合物与水之间的相互作用相似。当温度从278 K升高到310 K时,发现PAAM与周围环境之间的相互作用不受影响。在可能的情况下,与实验研究进行比较。我们的研究为各种分子间相互作用的性质及其在影响低聚物中原子尺度构象动力学中的作用提供了有用的见识。

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