Zhao Huiqi, Ouyang Bangsen, Han Lu, Mishra Yogendra Kumar, Zhang Zhiqiang, Yang Ya
CAS Center for Excellence in Nanoscience, Beijing Key Laboratory of Micro-Nano Energy and Sensor, Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing, 100083, People's Republic of China.
School of Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing, 100049, People's Republic of China.
Sci Rep. 2020 Jul 17;10(1):11864. doi: 10.1038/s41598-020-68790-w.
The self-powered sensors are more and more important in current society. However, detecting both light and temperature signals simultaneously without energy waste and signal interference is still a challenge. Here, we report a ZnO/graphene nanocomposite foam-based self-powered sensor, which can realize the simultaneous detection of light and temperature by using the conjuncted photo-thermoelectric effect in ZnO-graphene nanocomposite foam sensor. The output current under light, heating and cooling of the device with the best ZnO/graphene ratio (8:1) for the foam can reach 1.75 µA, 1.02 µA and 0.70 µA, respectively, which are approximately three fold higher than them of devices with other ZnO/graphene ratios. The ZnO-graphene nanocomposite foam device also possesses excellent thermoelectric and photoelectric performances for conjuncted lighting and heating detection without mutual interference. The ZnO-graphene nanocomposite foam device exhibits a new designation on the road towards the fabrication of low cost and one-circuit-based multifunction sensors and systems.
自供电传感器在当今社会越来越重要。然而,同时检测光和温度信号且不产生能量浪费和信号干扰仍然是一个挑战。在此,我们报道了一种基于ZnO/石墨烯纳米复合泡沫的自供电传感器,它可以利用ZnO-石墨烯纳米复合泡沫传感器中的联合光热电效应实现对光和温度的同时检测。对于该泡沫,具有最佳ZnO/石墨烯比例(8:1)的器件在光照、加热和冷却下的输出电流分别可达1.75 µA、1.02 µA和0.70 µA,这大约是具有其他ZnO/石墨烯比例的器件输出电流的三倍。ZnO-石墨烯纳米复合泡沫器件在联合照明和加热检测方面也具有优异的热电和光电性能,且互不干扰。ZnO-石墨烯纳米复合泡沫器件在低成本和基于单电路的多功能传感器及系统制造方面展现了一种新的设计思路。