单链聚合物的粘弹性

K. Nakajima, T. Nishi
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引用次数: 0

摘要

采用蠕虫状链模型,从而给出了熵弹性的微观信息。还讨论了溶剂对聚合物链构象的影响。将纳米钓鱼技术推广到聚合物单链的动态粘弹性测量中。在拉伸过程中,AFM悬臂梁在其共振频率处发生机械振荡。通过这种技术,我们可以同时定量地估计单链本身的刚度和粘度随长度的变化,并使用现象学模型。溶剂对低延伸区粘度的影响保证了在约10 kHz扰动下的粘度归因于单体溶剂摩擦。这些方法被证明是强有力的,为聚合物物理中的几个基本问题提供了实验证明,并将在未来通过任何宏观测量揭示聚合物链或聚合物溶液的隐藏性质。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Viscoelasticity of a Single Polymer Chain
with a worm-like chain model, and thus gave microscopic information about entropic elasticity. Solvent effects on polymer chain conformations were also discussed. Nanofishing technique was extended for dynamic viscoelasitc measurement of single polymer chains. AFM cantilever was mechanically oscillated at its resonant frequency during stretching process. By this technique, we could quantitatively and simultaneously estimate elongation-dependent changes of stiffness and viscosity of a single chain itself with using a phenomenological model. The solvent effect on the viscosity in low extension regions was ensured that the viscosity under about 10 kHz perturbation was attributed to monomer-solvent friction. These methods were proved to be powerful to give the experimental proofs against several basic questions in polymer physics and furthermore will unveil hidden properties of polymer chains or polymer solutions by any macroscopic measurements in the future.
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