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控制超声处理的关键参数以影响纤维素纳米晶体的分散状态、分离及手性向列相组装。

Controlling the critical parameters of ultrasonication to affect the dispersion state, isolation, and chiral nematic assembly of cellulose nanocrystals.

作者信息

Nugroho Robertus Wahyu N, Tardy Blaise L, Eldin Sayed M, Ilyas R A, Mahardika Melbi, Masruchin Nanang

机构信息

Research Center for Biomass and Bioproducts, National Research and Innovation Agency (BRIN), Cibinong 16911, Indonesia; Collaborative Research Center for Nanocellulose between BRIN and Andalas University, Padang 25163, Indonesia.

Khalifa University, Department of Chemical Engineering, Abu Dhabi, United Arab Emirates; Research and Innovation Center on CO(2) and Hydrogen, Khalifa University, Abu Dhabi, United Arab Emirates.

出版信息

Ultrason Sonochem. 2023 Oct;99:106581. doi: 10.1016/j.ultsonch.2023.106581. Epub 2023 Sep 3.

Abstract

Cellulose nanocrystals (CNCs) are typically extracted from plants and present a range of opto-mechanical properties that warrant their use for the fabrication of sustainable materials. While their commercialization is ongoing, their sustainable extraction at large scale is still being optimized. Ultrasonication is a well-established and routinely used technology for (re-) dispersing and/or isolating plant-based CNCs without the need for additional reagents or chemical processes. Several critical ultrasonication parameters, such as time, amplitude, and energy input, play dominant roles in reducing the particle size and altering the morphology of CNCs. Interestingly, this technology can be coupled with other methods to generate moderate and high yields of CNCs. Besides, the ultrasonics treatment also has a significant impact on the dispersion state and the surface chemistry of CNCs. Accordingly, their ability to self-assemble into liquid crystals and subsequent superstructures can, for example, imbue materials with finely tuned structural colors. This article gives an overview of the primary functions arising from the ultrasonication parameters for stabilizing CNCs, producing CNCs in combination with other promising methods, and highlighting examples where the design of photonic materials using nanocrystal-based celluloses is substantially impacted.

摘要

纤维素纳米晶体(CNCs)通常从植物中提取,具有一系列光学机械性能,这使得它们适用于制造可持续材料。虽然它们的商业化正在进行中,但大规模可持续提取仍在优化。超声处理是一种成熟且常规使用的技术,用于(再)分散和/或分离基于植物的CNCs,无需额外的试剂或化学过程。几个关键的超声处理参数,如时间、振幅和能量输入,在减小CNC颗粒尺寸和改变其形态方面起着主导作用。有趣的是,该技术可以与其他方法结合,以产生中等和高产量的CNCs。此外,超声处理对CNCs的分散状态和表面化学也有显著影响。因此,例如,它们自组装成液晶和后续超结构的能力可以赋予材料精细调谐的结构颜色。本文概述了超声处理参数在稳定CNCs、与其他有前景的方法结合生产CNCs以及突出基于纳米晶体纤维素的光子材料设计受到重大影响的示例方面的主要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2e0/10498310/d175b4af2d7f/ga1.jpg

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