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基于纤维素和混合材料的纸基驱动器。

Paper actuators made with cellulose and hybrid materials.

机构信息

Center for EAPap Actuator, Department of Mechanical Engineering, Inha University, 253 Yonghyun-Dong, Nam-Gu, Incheon 402-751, Korea.

出版信息

Sensors (Basel). 2010;10(3):1473-85. doi: 10.3390/s100301473. Epub 2010 Feb 26.

Abstract

Recently, cellulose has been re-discovered as a smart material that can be used as sensor and actuator materials, which is termed electro-active paper (EAPap). This paper reports recent advances in paper actuators made with cellulose and hybrid materials such as multi-walled carbon nanotubes, conducting polymers and ionic liquids. Two distinct actuator principles in EAPap actuators are demonstrated: piezoelectric effect and ion migration effect in cellulose. Piezoelectricity of cellulose EAPap is quite comparable with other piezoelectric polymers. But, it is biodegradable, biocompatible, mechanically strong and thermally stable. To enhance ion migration effect in the cellulose, polypyrrole conducting polymer and ionic liquids were nanocoated on the cellulose film. This hybrid cellulose EAPap nanocomposite exhibits durable bending actuation in an ambient humidity and temperature condition. Fabrication, characteristics and performance of the cellulose EAPap and its hybrid EAPap materials are illustrated. Also, its possibility for remotely microwave-driven paper actuator is demonstrated.

摘要

最近,纤维素被重新发现为一种智能材料,可以用作传感器和致动器材料,这种材料被称为电活性纸(EAPap)。本文报告了使用纤维素和混合材料(如多壁碳纳米管、导电聚合物和离子液体)制造纸致动器的最新进展。在 EAPap 致动器中展示了两种不同的致动原理:纤维素中的压电效应和离子迁移效应。纤维素 EAPap 的压电性能与其他压电聚合物相当。但是,它是可生物降解、生物相容、机械强度高和热稳定的。为了增强纤维素中的离子迁移效应,将导电聚合物聚吡咯和离子液体纳米涂层涂覆在纤维素薄膜上。这种混合纤维素 EAPap 纳米复合材料在环境湿度和温度条件下表现出持久的弯曲致动。本文阐述了纤维素 EAPap 及其混合 EAPap 材料的制造、特性和性能。还展示了其用于远程微波驱动纸致动器的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf35/3264434/5fa23683651c/sensors-10-01473f1.jpg

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