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3D打印纤维素纳米复合材料中的光响应运动。

Photoresponsive Movement in 3D Printed Cellulose Nanocomposites.

作者信息

Müller Luca A E, Demongeot Adrien, Vaucher Joanne, Leterrier Yves, Avaro Jonathan, Liebi Marianne, Neels Antonia, Burgert Ingo, Zimmermann Tanja, Nyström Gustav, Siqueira Gilberto

机构信息

Cellulose and Wood Materials Laboratory, Empa, Swiss Federal Laboratories for Materials Science and Technology, 8600 Dübendorf, Switzerland.

Wood Materials Science, Institute for Building Materials, ETH-Zürich, 8093 Zürich, Switzerland.

出版信息

ACS Appl Mater Interfaces. 2022 Apr 13;14(14):16703-16717. doi: 10.1021/acsami.2c02154. Epub 2022 Apr 4.

DOI:10.1021/acsami.2c02154
PMID:35377597
Abstract

Photoresponsive soft liquid crystalline elastomers (LCEs) transform light's energy into dynamic shape changes and are considered promising candidates for production of soft robotic or muscle-like devices. 3D printing allows access to elaborated geometries as well as control of the photoactuated movements; however, this development is still in its infancy and only a limited choice of LCE is yet available. Herein, we propose to introduce biocompatible and sustainable cellulose nanocrystals (CNC) into an LCE in order to facilitate the printing process by direct ink writing (DIW) and to benefit from the anisotropic mechanical properties resulting from the extrusion-induced alignment of such nanoparticles. After a first printing step where the rheological influence of CNC allows the production of self-standing structures, a doping process introduces the azobenzene photoswitches in the composite, conferring photomechanical behaviors to the printed material. This approach results in soft composites, with an elastic modulus around 20-30 MPa, that present fully reversible photosoftening of 35% and photomechanical actuation occurring less than 3 s after illumination. The presence of CNC as reinforcement particles allows precise tailoring of mechanical properties, rendering such phototriggered materials suitable candidates for the production of actuators and 3D structures with particular and dynamic load cases.

摘要

光响应性软液晶弹性体(LCEs)将光能转化为动态形状变化,被认为是制造软机器人或类似肌肉装置的有前途的候选材料。3D打印能够实现复杂的几何形状以及对光驱动运动的控制;然而,这一发展仍处于起步阶段,目前可供选择的LCE种类有限。在此,我们提议将生物相容性和可持续的纤维素纳米晶体(CNC)引入LCE中,以便通过直接墨水书写(DIW)促进打印过程,并受益于此类纳米颗粒挤出诱导排列所产生的各向异性机械性能。在第一步打印中,CNC的流变学影响使得能够生产自立结构,随后的掺杂过程将偶氮苯光开关引入复合材料中,赋予打印材料光机械性能。这种方法得到了弹性模量约为20 - 30 MPa的软复合材料,其呈现出35%的完全可逆光软化现象,并且在光照后不到3秒就会发生光机械驱动。作为增强颗粒的CNC的存在使得能够精确调整机械性能,使此类光触发材料成为制造具有特殊和动态载荷情况的致动器及3D结构的合适候选材料。

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