Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Science, National Center for Nanoscience and Technology, Beijing 100083, China.
School of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, GA 30332-0245, USA.
Sci Adv. 2017 May 31;3(5):e1700015. doi: 10.1126/sciadv.1700015. eCollection 2017 May.
Rapid advancements in stretchable and multifunctional electronics impose the challenge on corresponding power devices that they should have comparable stretchability and functionality. We report a soft skin-like triboelectric nanogenerator (STENG) that enables both biomechanical energy harvesting and tactile sensing by hybridizing elastomer and ionic hydrogel as the electrification layer and electrode, respectively. For the first time, ultrahigh stretchability (uniaxial strain, 1160%) and transparency (average transmittance, 96.2% for visible light) are achieved simultaneously for an energy-harvesting device. The soft TENG is capable of outputting alternative electricity with an instantaneous peak power density of 35 mW m and driving wearable electronics (for example, an electronic watch) with energy converted from human motions, whereas the STENG is pressure-sensitive, enabling its application as artificial electronic skin for touch/pressure perception. Our work provides new opportunities for multifunctional power sources and potential applications in soft/wearable electronics.
可拉伸和多功能电子产品的快速发展对相应的电力设备提出了挑战,要求它们具有相当的可拉伸性和功能性。我们报告了一种软皮肤状的摩擦纳米发电机(STENG),它通过将弹性体和离子水凝胶分别作为电层和电极混合,实现了生物力学能量收集和触觉感应。这是首次为能量收集装置同时实现超高的可拉伸性(单轴应变 1160%)和透明度(可见光平均透光率为 96.2%)。软 TENG 能够输出交流电,瞬时峰值功率密度为 35 mW m,能够利用人体运动转化的能量为可穿戴电子设备(例如电子表)供电,而 STENG 具有压力感应能力,可用于触摸/压力感知的人工电子皮肤。我们的工作为多功能电源提供了新的机会,并为软/可穿戴电子产品的潜在应用提供了可能。