BK21+ Transformative Training Program for Creative Mechanical and Aerospace Engineers and ‡Department of Mechanical and Aerospace Engineering, Seoul National University , Seoul 151744, South Korea.
ACS Appl Mater Interfaces. 2017 Feb 8;9(5):4658-4666. doi: 10.1021/acsami.6b10484. Epub 2017 Jan 25.
Over the past decade, the demand for high-performance wearable sensors has increased because of their capability for interaction with humans. Such sensors have typically been prepared on conventional substrates, such as silicon, PDMS, and copper mesh. In this work, we propose a class of wearable sensors fabricated from reduced graphene oxide (rGO) patterned paper substrates (rGO-paper). These rGO-paper sensors are highly sensitive to various deformations and capable of measuring bending and folding angles as small as 0.2° and 0.1°, respectively. We have demonstrated the applicability of these high-performance rGO-paper sensors by patterning rGO on kirigamis that can detect pulse and the motion of knees, wrists, and fingers. Finally, paper rings lined with rGO sensors were used to control a robotic hand, and an rGO-paper keyboard was used to light LEDs.
在过去的十年中,由于高性能可穿戴传感器具有与人类交互的能力,因此对其的需求不断增加。这些传感器通常是在传统衬底上制备的,例如硅、PDMS 和铜网。在这项工作中,我们提出了一类由还原氧化石墨烯(rGO)图案化纸张衬底(rGO-paper)制成的可穿戴传感器。这些 rGO-paper 传感器对各种变形非常敏感,能够分别测量小至 0.2°和 0.1°的弯曲和折叠角度。我们通过在可以检测脉搏和膝盖、手腕和手指运动的折纸(kirigami)上对 rGO 进行图案化,证明了这些高性能 rGO-paper 传感器的适用性。最后,用带有 rGO 传感器的纸环来控制机器手,用 rGO-paper 键盘来点亮 LED。