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基于液晶弹性体的纳米结构复合材料

Nanostructured Composites Based on Liquid-Crystalline Elastomers.

作者信息

Cresta Vanessa, Romano Giuseppe, Kolpak Alexej, Zalar Boštjan, Domenici Valentina

机构信息

Dipartimento di Chimica e Chimica Industriale, Università di Pisa, via Moruzzi 13, 56124 Pisa, Italy.

Department of Mechanical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139-4307, USA.

出版信息

Polymers (Basel). 2018 Jul 14;10(7):773. doi: 10.3390/polym10070773.

Abstract

Liquid-crystalline elastomers (LCEs) are the object of many research investigations due to their reversible and controllable shape deformations, and their high potential for use in the field of soft robots and artificial muscles. This review focuses on recent studies about polymer composites based on LCEs and nanomaterials having different chemistry and morphology, with the aim of instilling new physical properties into LCEs. The synthesis, physico-chemical characterization, actuation properties, and applications of LCE-based composites reported in the literature are reviewed. Several cases are discussed: (1) the addition of various carbon nanomaterials to LCEs, from carbon black to carbon nanotubes, to the recent attempts to include graphene layers to enhance the thermo-mechanic properties of LCEs; (2) the use of various types of nanoparticles, such as ferroelectric ceramics, gold nanoparticles, conductive molybdenum-oxide nanowires, and magnetic iron-oxide nanoparticles, to induce electro-actuation, magnetic-actuation, or photo-actuation into the LCE-based composites; (3) the deposition on LCE surfaces of thin layers of conductive materials (i.e., conductive polymers and gold nanolayers) to produce bending actuation by applying on/off voltage cycles or surface-wrinkling phenomena in view of tunable optical applications. Some future perspectives of this field of soft materials conclude the review.

摘要

液晶弹性体(LCEs)因其可逆且可控的形状变形以及在软机器人和人造肌肉领域的巨大应用潜力,成为众多研究的对象。本综述聚焦于近期有关基于LCEs和具有不同化学性质与形态的纳米材料的聚合物复合材料的研究,旨在赋予LCEs新的物理性能。对文献中报道的基于LCEs的复合材料的合成、物理化学表征、驱动性能及应用进行了综述。讨论了几种情况:(1)向LCEs中添加各种碳纳米材料,从炭黑到碳纳米管,再到近期尝试纳入石墨烯层以增强LCEs的热机械性能;(2)使用各种类型的纳米颗粒,如铁电陶瓷、金纳米颗粒、导电氧化钼纳米线和磁性氧化铁纳米颗粒,以在基于LCEs的复合材料中诱导电驱动、磁驱动或光驱动;(3)在LCEs表面沉积导电材料(即导电聚合物和金纳米层)的薄层,通过施加开/关电压循环或表面起皱现象来产生弯曲驱动,以实现可调谐光学应用。本综述最后总结了该软材料领域的一些未来展望。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/07f6/6403803/aa4c095f7306/polymers-10-00773-sch001.jpg

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