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Reversible Bending Behaviors of Photomechanical Soft Actuators Based on Graphene Nanocomposites

机译:基于石墨烯纳米复合材料的光机械软致动器的可逆弯曲行为

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摘要

Photomechanical nanocomposites embedded with light-absorbing nanoparticles show promising applications in photoresponsive actuations. Near infrared (nIR)-responsive nanocomposites based photomechanical soft actuators can offer lightweight functional and underexploited entry into soft robotics, active optics, drug delivery, etc. A novel graphene-based photomechanical soft actuators, constituted by Polydimethylsiloxane (PDMS)/graphene-nanoplatelets (GNPs) layer (PDMS/GNPs) and pristine PDMS layer, have been constructed. Due to the mismatch of coefficient of thermal expansion of two layers induced by dispersion of GNPs, controllable and reversible bendings response to nIR light irradiation are observed. Interestingly, two different bending behaviors are observed when the nIR light comes from different sides, i.e., a gradual single-step photomechanical bending towards PDMS/GNPs layer when irradiation from PDMS side, while a dual-step bending (finally bending to the PDMS/GNPs side but with an strong and fast backlash at the time of light is on/off) when irradiation from PDMS/GNPs side. The two distinctive photomechanical bending behaviors are investigated in terms of heat transfer and thermal expansion, which reveals that the distinctive bending behaviors can be attributed to the differences in temperature gradients along the thickness when irradiation from different sides. In addition, the versatile photomechanical bending properties will provide alternative way for drug-delivery, soft robotics and microswitches, etc.
机译:嵌入了光吸收纳米粒子的光机械纳米复合材料在光响应致动中显示出有希望的应用。基于近红外(nIR)响应的纳米复合物光机械软致动器可以为轻型功能和开发不足的软机器人,有源光学器件,药物输送等领域提供进入。新型的基于石墨烯的光机械软致动器,由聚二甲基硅氧烷(PDMS)/石墨烯-纳米血小板组成(GNPs)层(PDMS / GNPs)和原始PDMS层已构建。由于GNP的分散引起的两层热膨胀系数的不匹配,观察到了对nIR光照射的可控和可逆弯曲响应。有趣的是,当nIR光线来自不同侧面时,会观察到两种不同的弯曲行为,即从PDMS侧面照射时朝PDMS / GNPs层逐渐进行单步光机械弯曲,而进行双步弯曲(最终弯曲至PDMS /从PDMS / GNPs一侧照射时,GNP一侧,但在开/关时有强烈的快速反冲。从传热和热膨胀方面研究了两种独特的光机械弯曲行为,这表明当从不同侧面照射时,独特的弯曲行为可归因于沿厚度方向的温度梯度差异。此外,灵活的光机械弯曲特性将为药物输送,软机器人和微动开关等提供替代方法。

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