Han Kook In, Kim Seungdu, Lee In Gyu, Kim Jong Pil, Kim Jung-Ha, Hong Suck Won, Cho Byung Jin, Hwang Wan Sik
Department of Materials Engineering, Korea Aerospace University, Goyang 10540, Korea.
Division of High Technology Materials Research & Molecular Materials Research Team, Korea Basic Science Institute, Busan 168-230, Korea.
Sensors (Basel). 2017 Feb 19;17(2):407. doi: 10.3390/s17020407.
Cylindrical silk fiber (SF) was coated with Graphene oxide (GO) for capacitive humidity sensor applications. Negatively charged GO in the solution was attracted to the positively charged SF surface via electrostatic force without any help from adhesive intermediates. The magnitude of the positively charged SF surface was controlled through the static electricity charges created on the SF surface. The GO coating ability on the SF improved as the SF's positive charge increased. The GO-coated SFs at various conditions were characterized using an optical microscope, scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), Raman spectroscopy, and LCR meter. Unlike the intact SF, the GO-coated SF showed clear response-recovery behavior and well-behaved repeatability when it was exposed to 20% relative humidity (RH) and 90% RH alternatively in a capacitive mode. This approach allows humidity sensors to take advantage of GO's excellent sensing properties and SF's flexibility, expediting the production of flexible, low power consumption devices at relatively low costs.
为了用于电容式湿度传感器应用,将圆柱形丝纤维(SF)用氧化石墨烯(GO)进行包覆。溶液中带负电荷的GO通过静电力被吸引到带正电荷的SF表面,无需任何粘合剂中间体的帮助。通过在SF表面产生的静电荷来控制带正电荷的SF表面的电荷量。随着SF正电荷的增加,SF上的GO包覆能力提高。使用光学显微镜、扫描电子显微镜(SEM)、能量色散X射线光谱(EDS)、拉曼光谱和LCR测量仪对不同条件下的GO包覆SF进行了表征。与完整的SF不同,当以电容模式交替暴露于20%相对湿度(RH)和90%RH时,GO包覆的SF表现出明显的响应-恢复行为和良好的重复性。这种方法使湿度传感器能够利用GO的优异传感特性和SF的柔韧性,以相对较低的成本加快生产柔性、低功耗设备。