Gray Derek G
Department of Chemistry, McGill University, Montreal, Canada H3A 2A7
Philos Trans A Math Phys Eng Sci. 2018 Feb 13;376(2112). doi: 10.1098/rsta.2017.0038.
Cellulose nanocrystals (CNCs) are polydisperse rod-shaped particles of crystalline cellulose I, typically prepared by sulfuric acid hydrolysis of natural cellulose fibres to give aqueous colloidal suspensions stabilized by sulfate half-ester groups. Sufficiently dilute suspensions are isotropic fluids, but as the concentration of CNC in water is increased, a critical concentration is reached where a spontaneously ordered phase is observed. The (equilibrium) phase separation of the ordered chiral nematic phase is in competition with a tendency of the CNC suspension to form a gel. Qualitatively, factors that reduce the stability of the CNC suspension favour the onset of gelation. The chiral nematic structure is preserved, at least partially, when the suspension dries. Solid chiral nematic films of cellulose are of interest for their optical and templating properties, but the preparation of the films requires improvement. The processes that govern the formation of solid chiral nematic films from CNC suspensions include phase separation, gelation and also the effects of shear on CNC orientation during evaporation. Some insight into these processes is provided by polarized light microscopy, which indicates that the relaxation of shear-induced orientation to give a chiral nematic structure may occur via an intermediate twist-bend state.This article is part of a discussion meeting issue 'New horizons for cellulose nanotechnology'.
纤维素纳米晶体(CNCs)是结晶纤维素I的多分散棒状颗粒,通常通过天然纤维素纤维的硫酸水解制备,以得到由硫酸半酯基团稳定的水性胶体悬浮液。足够稀的悬浮液是各向同性流体,但随着水中CNC浓度的增加,会达到一个临界浓度,此时会观察到自发有序相。有序手性向列相的(平衡)相分离与CNC悬浮液形成凝胶的趋势相互竞争。定性地说,降低CNC悬浮液稳定性的因素有利于凝胶化的开始。当悬浮液干燥时,手性向列结构至少会部分保留。纤维素固体手性向列薄膜因其光学和模板性能而受到关注,但薄膜的制备需要改进。从CNC悬浮液形成固体手性向列薄膜的过程包括相分离、凝胶化以及蒸发过程中剪切对CNC取向的影响。偏光显微镜提供了对这些过程的一些见解,这表明剪切诱导取向松弛以形成手性向列结构可能通过中间扭曲弯曲状态发生。本文是“纤维素纳米技术的新视野”讨论会议特刊的一部分。