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在外场下纤维素纳米晶体悬浮液中长波长密度涨落与取向的耦合。

Coupling of long-wavelength density fluctuations to orientations in cellulose nanocrystal suspensions under external fields.

机构信息

Forschungszentrum Jülich, Institute of Complex Systems, ICS-3, D-52425 Jülich, Germany.

Institute of Food Nutrition and Health, ETH Zurich, 8092 Zurich, Switzerland.

出版信息

Phys Rev E. 2019 Nov;100(5-1):052606. doi: 10.1103/PhysRevE.100.052606.

Abstract

Motivated by the development of cellulose-based functional materials, we investigate the microscopic dynamics of suspensions of cellulose nanocrystals (CNCs) at different ionic strengths, both in the absence and in the presence of AC electric fields and for various temperatures. A concentration of 5 wt % of the CNCs is chosen for which the dispersions are in the full chiral-nematic state at low ionic strengths. Dynamic light scattering is used to characterize the wave vector-dependent decay rates of number-density fluctuations. Contrary to an isotropic suspension, the dispersion relations (the wave vector dependence of the correlation-function decay rates) as obtained by means of depolarized light scattering are found to exhibit anomalous behavior. The dispersion relations, both without and with an external field, exhibit minima at small wave vectors, which is attributed to coupling of translational motion to the orientation of the CNCs, shown in the chiral-nematic state. The location of the minima is found to weakly depend on ionic strength and shifts significantly towards larger wave vectors upon applying an external electric field for sufficiently high ionic strengths. Finally, preliminary results are presented for smaller length-scale density fluctuations (at larger wave vectors) as a function of temperature, revealing the anisotropic mobilities in the chiral-nematic state of CNCs.

摘要

受纤维素基功能材料发展的启发,我们研究了不同离子强度下、有无交流电场以及不同温度下纤维素纳米晶体(CNC)悬浮液的微观动力学。选择了浓度为 5wt%的 CNC,在低离子强度下,分散体处于完整的手性向列态。动态光散射用于表征数密度涨落的波矢相关衰减率。与各向同性悬浮液相反,通过非偏振光散射获得的分散关系(相关函数衰减率的波矢依赖性)表现出异常行为。在没有外部场和有外部场的情况下,分散关系都在小波矢处表现出最小值,这归因于 CNC 取向与平移运动的耦合,在手性向列态下显示出来。发现最小值的位置对离子强度的依赖性较弱,并且在施加外部电场时,对于足够高的离子强度,会显著向较大的波矢移动。最后,还呈现了较小尺度密度涨落(在较大波矢处)作为温度的函数的初步结果,揭示了 CNC 在手性向列态中的各向异性迁移率。

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