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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Large-area graphene realizing ultrasensitive photothermal actuator with high transparency: new prototype robotic motions under infrared-light stimuli
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Large-area graphene realizing ultrasensitive photothermal actuator with high transparency: new prototype robotic motions under infrared-light stimuli

机译:大面积石墨烯实现具有高透明性的超灵敏光热致动器:红外光刺激下的新型机器人原型运动

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摘要

As transparent flexible electronics have recently become an emerging technology, they present great demands on the development of transparent soft actuators in the construction of invisible soft robots that would satisfy our daily lives with artificial intelligence devices. However, the current methodologies in building traditional soft actuators have intrinsically hampered the realization of high transparency devices with ultrasensitive responses. Herein, the utilization of large-area graphene successfully realizes the construction of transparent soft actuators with ultrasensitive responses, thereby opening the door for the design of three-dimensional (3D) intelligent models of transparent humanoid robots and micro-/ nano-machines. The multiple synergic advantages of large-area graphene, especially its excellent IR absorption ability and ultra-thin dimensions, successfully bring together the excellent actuating sensitivity and high transparency, with the fascinating advantages of remote control, excellent mechanical strength, high sensitivity and high energy conversion efficiency. The transparent actuator model then builds a new bridge between mechanical behavior and the photo-thermal conversion effect not yet realized in other systems. Using infrared-light as the driving energy to realize complex robotic motions not only represents new prototype soft robot models, but also offers novel prospects for highly efficient solar light utilization, as well as the design of novel intelligent soft robot models.
机译:随着透明柔性电子产品最近成为一种新兴技术,它们对透明软致动器的发展提出了巨大的要求,这些透明致动器将在无形的软机器人中得到满足,这些软机器人将通过人工智能设备满足我们的日常生活。然而,构建传统软致动器的当前方法本质上阻碍了具有超灵敏响应的高透明器件的实现。在此,大面积石墨烯的利用成功地实现了具有超灵敏响应的透明软致动器的构造,从而为透明人形机器人和微米/纳米机器的三维(3D)智能模型设计打开了大门。大面积石墨烯的多重协同优势,特别是其出色的红外吸收能力和超薄尺寸,成功地将出色的致动灵敏度和高透明度结合在一起,具有遥控,出色的机械强度,高灵敏度和高能量的迷人优势。转换效率。透明的执行器模型然后在机械行为和其他系统中尚未实现的光热转换效果之间建立了新的桥梁。使用红外光作为驱动能量来实现复杂的机器人运动,不仅代表了新的原型软机器人模型,而且为高效利用太阳光提供了新的前景,以及新型智能软机器人模型的设计。

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