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纤维素纳米晶表面功能化对纤维素纳米晶/离子液体软驱动器弯曲响应的影响。

Influence of cellulose nanocrystal surface functionalization on the bending response of cellulose nanocrystal/ionic liquid soft actuators.

机构信息

Centre of Chemistry, University of Trás-os-Montes e Alto Douro, 5000-801 Vila Real, Portugal.

出版信息

Phys Chem Chem Phys. 2021 Mar 21;23(11):6710-6716. doi: 10.1039/d1cp00289a. Epub 2021 Mar 12.

DOI:10.1039/d1cp00289a
PMID:33710228
Abstract

This work reports the development of renewable cellulose nanocrystal (CNC) and ionic liquid (IL) hybrid materials for bending actuator applications. For this purpose, cellulose nanocrystals with different surface charges (neutral, positive and negative) were prepared and increasing amounts of the IL 2-hydroxy-ethyl-trimethylammonium dihydrogen phosphate ([Ch][DHP]) (10 and 25 wt%) were incorporated into the CNC hosting matrix. The morphology of the samples was evaluated, proving that both surface charge and IL incorporation do not affect the characteristic layered structure of the CNC. Atomic force microscopy results reveal a sea-island morphology in the hybrid films, where CNC bundles are surrounded by [Ch][DHP]-rich regions. An increase in the electrical conductivity is observed upon IL incorporation into the CNC matrix, regardless of the CNC surface charge. The highest electrical conductivity values are observed for IL/CNC (+) 25 wt% with an electrical conductivity of 3.18 × 10± 2.75 × 10 S cm and IL/CNC (-) 10 wt% (1.26 × 10± 5.92 × 10 S cm). The highest bending displacement of 2.1 mm for an applied voltage of 4.0 Vpp at a frequency of 100 mHz was obtained for the IL/CNC (+) 25 wt% composite, demonstrating the suitability of cellulose to develop soft actuators.

摘要

这项工作报道了可再生纤维素纳米晶体(CNC)和离子液体(IL)混合材料的开发,用于弯曲执行器应用。为此,制备了具有不同表面电荷(中性、正电荷和负电荷)的纤维素纳米晶体,并将越来越多的离子液体 2-羟乙基三甲基氯化铵二氢磷酸盐([Ch][DHP])(10 和 25wt%)掺入到 CNC 宿主基质中。对样品的形态进行了评估,证明表面电荷和 IL 的掺入都不会影响 CNC 的特征层状结构。原子力显微镜结果表明,在混合薄膜中存在海-岛形态,其中 CNC 束被[Ch][DHP]丰富的区域包围。无论 CNC 的表面电荷如何,将 IL 掺入 CNC 基质中都会观察到电导率的增加。在 IL/CNC(+)25wt%中观察到最高的电导率值,电导率为 3.18×10±2.75×10Scm,而 IL/CNC(-)10wt%(1.26×10±5.92×10Scm)的电导率也较高。在 100mHz 的频率下施加 4.0Vpp 的电压时,IL/CNC(+)25wt%复合材料获得了 2.1mm 的最大弯曲位移,证明了纤维素适合开发软致动器。

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