Luo Mutan, Chen Run, Zhu Zhaowei, Cheng Chuantong, Ning Xin, Huang Beiju
State Key Laboratory on Integrated Optoelectronics, Institute of Semiconductors, Chinese Academy of Sciences, Beijing 100083, China.
Brain Machine Fusion Intelligence Institute, Suzhou 215133, China.
Nanomaterials (Basel). 2023 Jul 2;13(13):1996. doi: 10.3390/nano13131996.
A high-efficiency photodetector consisting of colloidal PbS quantum dots (QDs) and single-layer graphene was prepared in this research. In the early stage, PbS QDs were synthesized and characterized, and the results showed that the product conformed with the characteristics of high-quality PbS QDs. Afterwards, the photodetector was derived through steps, including the photolithography and etching of indium tin oxide (ITO) electrodes and the graphene active region, as well as the spin coating and ligand substitution of the PbS QDs. After application testing, the photodetector, which was prepared in this research, exhibited outstanding properties. Under visible and near-infrared light, the highest responsivities were up to 202 A/W and 183 mA/W, respectively, and the highest detectivities were up to 2.24 × 10 Jones and 2.47 × 10 Jones, respectively, with light densities of 0.56 mW/cm and 1.22 W/cm, respectively. In addition to these results, the response of the device and the rise and fall times for the on/off illumination cycles showed its superior performance, and the fastest response times were approximately 0.03 s and 1.0 s for the rise and fall times, respectively. All the results illustrated that the photodetector based on PbS and graphene, which was prepared in this research, possesses the potential to be applied in reality.
本研究制备了一种由胶体硫化铅量子点(QDs)和单层石墨烯组成的高效光电探测器。在前期,合成并表征了硫化铅量子点,结果表明产物符合高质量硫化铅量子点的特性。之后,通过包括铟锡氧化物(ITO)电极和石墨烯活性区域的光刻与蚀刻,以及硫化铅量子点的旋涂和配体取代等步骤制备出光电探测器。经过应用测试,本研究制备的光电探测器表现出优异的性能。在可见光和近红外光下,最高响应率分别高达202 A/W和183 mA/W,最高探测率分别高达2.24×10琼斯和2.47×10琼斯,光密度分别为0.56 mW/cm²和1.22 W/cm²。除这些结果外,器件的响应以及开/关光照循环的上升和下降时间显示出其卓越性能,上升和下降时间的最快响应时间分别约为0.03 s和1.0 s。所有结果表明,本研究制备的基于硫化铅和石墨烯的光电探测器具有实际应用潜力。