Cellulose Nanocrystals (CNC) Liquid Crystalline State in Suspension: An Overview

Aref Abbasi Moud, Aliyeh Abbasi Moud
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引用次数: 3

Abstract

Films made from cellulose nanocrystals (CNCs) may have iridescent structural colours (pure or in combination with other materials). Numerous fields might benefit from understanding how CNC self-assembly constructs these periodic structures. Herein, we looked at the colloidal characteristics of CNC particles as well as the development and behaviour of liquid crystals (LCs). We conducted a very brief literature analysis on the main issues related to the chiral structure creation of CNC LCs, including the origins of chirality, orientation, as well as its mechanical properties. Finally, by altering the pitch size, applications such as energy storage, humidity sensing, and photonic crystals were studied in a case-by-case manner. The manuscript, it is observed that the rational design of metamaterials built on CNCs allows for the reversible changing of colours through physical and chemical modifications by adding chemical or changing environmental factors. Examples of this alteration include the use of solvents, chemical penetration in applied fields (magnetic and electric), deflection, light, temperature change, acidity change, and molecular interaction detection. Reversible colours may be produced by altering the spacing between the particles, the filler materials, or the structural elements of the system’s refractive indices. This article briefly discusses the inner workings of CNCs, potential barriers to developing photonic structures, and several techniques and processes for achieving changeable colours.
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纤维素纳米晶体(CNC)在悬浮液中的液晶状态:概述
由纤维素纳米晶体(cnc)制成的薄膜可能具有彩虹色的结构颜色(纯的或与其他材料混合的)。了解CNC自组装如何构建这些周期结构可能会使许多领域受益。在这里,我们研究了CNC颗粒的胶体特性以及液晶(lc)的发展和行为。我们进行了一个非常简短的文献分析,涉及到CNC的手性结构创建的主要问题,包括手性的起源,取向,以及它的机械性能。最后,通过改变螺距尺寸,对能量存储、湿度传感和光子晶体等应用进行了具体的研究。手稿中观察到,基于cnc的超材料的合理设计允许通过添加化学或改变环境因素进行物理和化学修饰来可逆地改变颜色。这种改变的例子包括溶剂的使用、应用领域(磁和电)中的化学渗透、偏转、光、温度变化、酸度变化和分子相互作用检测。可以通过改变粒子之间的间距、填充材料或系统折射率的结构元素来产生可逆的颜色。本文简要讨论了cnc的内部工作原理,发展光子结构的潜在障碍,以及实现可变颜色的几种技术和工艺。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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