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基于还原氧化石墨烯/碳纳米管杂化填充的聚氨酯的红外驱动高储能密度恢复。

Infrared-actuated recovery of polyurethane filled by reduced graphene oxide/carbon nanotube hybrids with high energy density.

机构信息

School of Materials Science and Engineering, Tianjin University and Tianjin Key Laboratory of Composite and Functional Materials , Tianjin 300072, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2013 Nov 13;5(21):10882-8. doi: 10.1021/am403071k. Epub 2013 Oct 18.

Abstract

Optically actuated shape recovery materials receive much interest because of their great ability to control the creation of mechanical motion remotely and precisely. An infrared (IR) triggered actuator based on shape recovery was fabricated using polyurethane (TPU) incorporated by sulfonated reduced graphene oxide (SRGO)/sulfonated carbon nanotube (SCNT) hybrid nanofillers. Interconnected SRGO/SCNT hybrid nanofillers at a low weight loading of 1% dispersed in TPU showed good IR absorption and improved the crystallization of soft segments for a large shape deformation. The output force, energy density and recovery time of IR-triggered actuators were dependent on weight ratios of SRGO to SCNT (SRGO:SCNT). TPU nanocomposites filled by a hybrid nanofiller with SRGO:SCNT of 3:1 showed the maximum IR-actuated stress recovery of lifting a 107.6 g weight up 4.7 cm in 18 s. The stress recovery delivered a high energy density of 0.63 J/g and shape recovery force up to 1.2 MPa due to high thermal conductivity (1.473 W/mK) and Young's modulus of 23.4 MPa. Results indicate that a trade-off between the stiffness and efficient heat transfer controlled by synergistic effect between SRGO and SCNT is critical for high mechanical power output of IR-triggered actuators. IR-actuated shape recovery of SRGO/SCNT/TPU nanocomposites combining high energy density and output forces can be further developed for advanced optomechanical systems.

摘要

光致动形状恢复材料因其能够远程精确控制机械运动的产生而受到广泛关注。本文采用磺化还原氧化石墨烯(SRGO)/磺化碳纳米管(SCNT)杂化纳米填料增强的聚氨酯(TPU),制备了一种基于形状恢复的红外(IR)触发驱动器。在低至 1%重量负载下分散在 TPU 中的互穿 SRGO/SCNT 杂化纳米填料具有良好的红外吸收能力,并改善了软段的结晶,从而实现了较大的形状变形。IR 触发驱动器的输出力、能量密度和恢复时间取决于 SRGO 与 SCNT 的重量比(SRGO:SCNT)。填充有 SRGO:SCNT 为 3:1 的杂化纳米填料的 TPU 纳米复合材料在 18 s 内将 107.6 g 的重量提升 4.7 cm,表现出最大的 IR 致动应力恢复。由于高导热系数(1.473 W/mK)和杨氏模量为 23.4 MPa,其应力恢复可提供 0.63 J/g 的高能量密度和高达 1.2 MPa 的形状恢复力。结果表明,通过 SRGO 和 SCNT 的协同效应控制的刚度和有效热传递之间的权衡对于 IR 触发驱动器的高机械功率输出至关重要。具有高能量密度和输出力的 SRGO/SCNT/TPU 纳米复合材料的 IR 致动形状恢复可进一步开发用于先进的光电机械系统。

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