Nardekar Swapnil Shital, Kim Sang-Jae
Nanomaterials & System Lab, Major of Mechatronics Engineering, Faculty of Applied Energy System, Jeju National University, Jeju, 63243, Republic of Korea.
Nanomaterials & System Lab, Major of Mechanical System Engineering, College of Engineering, Jeju National University, Jeju, 63243, Republic of Korea.
Adv Sci (Weinh). 2023 Oct;10(28):e2303918. doi: 10.1002/advs.202303918. Epub 2023 Aug 6.
Soft robotics has developed rapidly in recent years as an emergent research topic, offering new avenues for various industrial and biomedical settings. Despite these advancements, its applicability is limited to locomotion and actuation due to the lack of an adequate charge storage system that can support the robot's sensory system in challenging conditions. Herein, an ultra-flexible, lightweight (≈50 milligrams), and wirelessly rechargeable micro-supercapacitor as an onboard power source for miniaturized soft robots, capable of powering a range of sensory is proposed. The simple and scalable direct laser combustion technique is utilized to fabricate the robust graphene-like carbon micro-supercapacitor (GLC-MSC) electrode. The GLC-MSC demonstrates superior areal capacitance (8.76 mF cm ), and maintains its original capacitance even under extreme actuation frequency (1-30 Hz). As proof of conceptthe authors fabricate a fully integrated magnetic-soft robot that shows outstanding locomotion aptitude and charged wirelessly (up to 2.4 V within 25s), making it an ideal onboard power source for soft robotics.
近年来,软机器人技术作为一个新兴的研究课题发展迅速,为各种工业和生物医学领域提供了新的途径。尽管取得了这些进展,但由于缺乏一个足够的电荷存储系统,无法在具有挑战性的条件下支持机器人的传感系统,其适用性仅限于运动和驱动。在此,我们提出了一种超灵活、轻质(约50毫克)且可无线充电的微型超级电容器,作为小型软机器人的机载电源,能够为一系列传感器供电。采用简单且可扩展的直接激光燃烧技术来制造坚固的类石墨烯碳微型超级电容器(GLC-MSC)电极。GLC-MSC表现出优异的面积电容(8.76 mF/cm²),即使在极端驱动频率(1-30 Hz)下也能保持其原始电容。作为概念验证,作者制造了一个完全集成的磁性软机器人,它表现出出色的运动能力,并能进行无线充电(在25秒内可达2.4 V),使其成为软机器人技术理想的机载电源。