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耐心是一种美德:纤维素纳米晶各变体的自组装和物理化学性质。

Patience is a virtue: self-assembly and physico-chemical properties of cellulose nanocrystal allomorphs.

机构信息

Adolphe Merkle Institute, University of Fribourg, Chemin des Verdiers 4, 1700 Fribourg, Switzerland and University of British Columbia, 2424 Main Mall, Vancouver, BC V6 T 1Z4, Canada.

Sustainable Materials Lab, Chemical Engineering, KU Leuven Kulak Kortrijk Campus, E. Sabbelaan 53 box 7659, 8500 Kortrijk, Belgium.

出版信息

Nanoscale. 2020 Aug 28;12(33):17480-17493. doi: 10.1039/d0nr04491a.

Abstract

Cellulose nanocrystals (CNCs) are bio-based rod-like nanoparticles with a quickly expanding market. Despite the fact that a variety of production routes and starting cellulose sources are employed, all industrially produced CNCs consist of cellulose I (CNC-I), the native crystalline allomorph of cellulose. Here a comparative study of the physico-chemical properties and liquid crystalline behavior of CNCs produced from cellulose II (CNC-II) and typical CNC-I is reported. CNC-I and CNC-II are isolated by sulfuric acid hydrolysis of cotton and mercerized cotton, respectively. The two allomorphs display similar surface charge densities and ζ-potentials and both have a right-handed twist, but CNC-II have a slightly smaller average length and aspect ratio, and are less hygroscopic. Interestingly, the self-assembly behavior of CNC-I and CNC-II in water is different. Whilst CNC-I forms a chiral nematic phase, CNC-II initially phase separates into an upper isotropic and a lower nematic liquid crystalline phase, before a slow reorganization into a large-pitch chiral nematic texture occurs. This is potentially caused by a combination of factors, including the inferred faster rotational diffusion of CNC-II and the different crystal structures of CNC-I and CNC-II, which are responsible for the presence and absence of a giant dipole moment, respectively.

摘要

纤维素纳米晶体(CNCs)是一种生物基棒状纳米粒子,其市场正在迅速扩大。尽管采用了多种生产路线和起始纤维素源,但所有工业生产的 CNC 都由纤维素 I(CNC-I)组成,即纤维素的天然结晶同素异形体。本文报道了由纤维素 II(CNC-II)和典型的 CNC-I 制备的 CNC 的物理化学性质和液晶行为的比较研究。CNC-I 和 CNC-II 分别通过硫酸水解棉花和丝光棉得到。两种同素异形体具有相似的表面电荷密度和 ζ 电位,且均呈右旋扭曲,但 CNC-II 的平均长度和纵横比略小,吸湿性也较小。有趣的是,CNC-I 和 CNC-II 在水中的自组装行为不同。虽然 CNC-I 形成手性向列相,但 CNC-II 最初会分相为上各向同性相和下向列液晶相,然后缓慢重组为大螺距手性向列织构。这可能是多种因素共同作用的结果,包括推测 CNC-II 的旋转扩散更快,以及 CNC-I 和 CNC-II 的晶体结构不同,分别导致了巨型偶极矩的存在和不存在。

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