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Photomechanical responses of carbon nanotube/polymer actuators

机译:碳纳米管/聚合物致动器的光机械响应

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Recent studies have investigated the photomechanical properties of carbon nanotubes which can be utilized to construct optical actuators. In this paper we compare the photomechanical response from single-wall and multi-wall carbon nanotube/polymer systems in multilayer and nanocomposite actuator constructions. Incorporating polymers in the actuators, single-wall and multi- wall nanotubes show similar photomechanical responses, which are directly related to prestrain and nanotube alignments. Nanotube/polymer multilayered actuators exhibit comparable actuation strokes to the nanocomposite counterparts, while enabling easier sample construction, intact polymer and nanotube properties, and compatibility to CMOS/MEMS processes. The photomechanical responses can be well understood based on affine modelling of photomechanical responses.
机译:最近的研究已经研究了可用于构造光学致动器的碳纳米管的光机械性能。在本文中,我们比较了多层和纳米复合驱动器结构中单壁和多壁碳纳米管/聚合物系统的光机械响应。在执行机构中掺入聚合物后,单壁和多壁纳米管显示出相似的光机械响应,这与预应变和纳米管排列直接相关。纳米管/聚合物多层致动器表现出与纳米复合材料相当的致动行程,同时使样品构造,完整的聚合物和纳米管性能更容易,并与CMOS / MEMS工艺兼容。基于光机械响应的仿射建模,可以很好地理解光机械响应。

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