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环糊精化学交联聚合物中的热涨落

Thermal fluctuations in chemically cross-linked polymers of cyclodextrins.

作者信息

Rossi Barbara, Venuti Valentina, Paciaroni Alessandro, Mele Andrea, Longeville Stéphane, Natali Francesca, Crupi Vincenza, Majolino Domenico, Trotta Francesco

机构信息

Elettra - Sincrotrone Trieste, Strada Statale 14 km 163.5, Area Science Park, 34149 Trieste, Italy.

出版信息

Soft Matter. 2015 Mar 21;11(11):2183-92. doi: 10.1039/c4sm02000f.

Abstract

The extent and nature of thermal fluctuations in the innovative class of cross-linked polymers called cyclodextrin nanosponges (CDNS) are investigated, on the picosecond time scale, through elastic and quasielastic neutron scattering experiments. Nanosponges are complex 3D polymer networks where covalent bonds connecting different cyclodextrin (CD) units and intra- and inter-molecular hydrogen-bond interactions cooperate to define the molecular architecture and fast dynamics of the polymer. The study presented here aims to clarify the nature of the conformational rearrangements activated by increasing temperature in the nanosponge polymer, and the constraints imposed by intra- and inter-molecular hydrogen-bond patterns on the internal dynamics of the macromolecule. The results suggest a picture, in which conformational rearrangements involving the torsion of the OH groups around the C-O bonds dominate the internal dynamics of the polymer over the picosecond time scale. Moreover, the estimated values of mean square displacements reveal that the motions of the hydrogen atoms in the nanosponges are progressively hampered as the cross-linking degree of the polymer is increased. Finally, the study of the molecular relaxations suggests a dynamical rearrangement of the hydrogen-bond networks, which is characterized by a jump diffusion motion of the more mobile hydrogen atoms belonging to the OH groups of the CD units. All these findings add further contribution to the rational comprehensive view of the dynamics of these macromolecules, which may be particularly beneficial in designing new drug-delivery systems with tuneable inclusion/release properties.

摘要

通过弹性和准弹性中子散射实验,在皮秒时间尺度上研究了称为环糊精纳米海绵(CDNS)的新型交联聚合物中热涨落的程度和性质。纳米海绵是复杂的三维聚合物网络,连接不同环糊精(CD)单元的共价键以及分子内和分子间的氢键相互作用共同决定了聚合物的分子结构和快速动力学。本文的研究旨在阐明纳米海绵聚合物中温度升高所激活的构象重排的性质,以及分子内和分子间氢键模式对大分子内部动力学的限制。结果表明,在皮秒时间尺度上,涉及OH基团围绕C - O键扭转的构象重排主导了聚合物的内部动力学。此外,均方位移的估计值表明,随着聚合物交联度的增加,纳米海绵中氢原子的运动逐渐受到阻碍。最后,对分子弛豫的研究表明氢键网络发生了动态重排,其特征是属于CD单元OH基团的更易移动的氢原子的跳跃扩散运动。所有这些发现为这些大分子动力学的合理综合观点做出了进一步贡献,这在设计具有可调包合/释放特性的新型药物递送系统中可能特别有益。

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