State Key Laboratory for Advanced Metals and Materials, School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing, 100083, China.
Beijing Municipal Key Laboratory of Advanced Energy Materials and Technologies, University of Science and Technology Beijing, Beijing, 100083, China.
Adv Mater. 2017 May;29(17). doi: 10.1002/adma.201606703. Epub 2017 Mar 1.
Triboelectric nanogenerators (TENGs) or TENG-based self-charging systems harvesting energy from ambient environment are promising power solution for electronics. The stable running remains a key consideration in view of potential complex application environment. In this work, a textile-based tailorable multifunctional TENG (T-TENG) is developed. The T-TENG is used as self-powered human body motion sensor, water energy harvester, and formed all textile-based flexible self-charging system by integrating with textile-based supercapacitors. The service behavior and the mechanism of performance retention are also studied when the T-TENG is damaged. As a self-powered human body motion sensor, the T-TENG maintains the stable properties when it is cut. As a water energy harvester, the T-TENG is capable of scavenging mechanical energy from water efficiently even if it is damaged partly. Besides, the charge properties of the self-charging system are systematically investigated when the T-TENG is cut. The investigation on service behavior of T-TENG and TENG-based self-charging system pushes forward the development of highly reliable electronics and is a guide for other nanodevices and nanosystems.
摩擦纳米发电机(TENG)或基于 TENG 的自充电系统从环境中收集能量,是电子设备有前途的电源解决方案。鉴于潜在的复杂应用环境,稳定运行仍然是一个关键考虑因素。在这项工作中,开发了一种基于纺织品的可定制多功能 TENG(T-TENG)。T-TENG 用作自供电人体运动传感器、水能收集器,并通过与基于纺织品的超级电容器集成形成全纺织品的柔性自充电系统。还研究了 T-TENG 损坏时的服务行为和性能保持机制。作为自供电人体运动传感器,T-TENG 在切割时保持稳定的性能。作为水能收集器,即使部分损坏,T-TENG 也能够有效地从水中收集机械能。此外,还系统地研究了 T-TENG 切割时自充电系统的充电特性。T-TENG 和基于 TENG 的自充电系统的服务行为的研究推动了高可靠性电子产品的发展,为其他纳米器件和纳米系统提供了指导。