Ruiz-Preciado Luis Arturo, Pešek Petr, Guerra-Yánez Carlos, Ghassemlooy Zabih, Zvánovec Stanislav, Hernandez-Sosa Gerardo
Light Technology Institute, Karlsruhe Institute of Technology, Engesserstr. 13, 76131, Karlsruhe, Germany.
InnovationLab, Speyererstr. 4, 69115, Heidelberg, Germany.
Sci Rep. 2024 Feb 8;14(1):3296. doi: 10.1038/s41598-024-53796-5.
Emerging areas such as the Internet of Things (IoT), wearable and wireless sensor networks require the implementation of optoelectronic devices that are cost-efficient, high-performing and capable of conforming to different surfaces. Organic semiconductors and their deposition via digital printing techniques have opened up new possibilities for optical devices that are particularly suitable for these innovative fields of application. In this work, we present the fabrication and characterization of high-performance organic photodiodes (OPDs) and their use as an optical receiver in an indoor visible light communication (VLC) system. We investigate and compare different device architectures including spin-coated, partially-printed, and fully-printed OPDs. The presented devices exhibited state-of-the-art performance and reached faster detection speeds than any other OPD previously reported as organic receivers in VLC systems. Finally, our results demonstrate that the high-performance of the fabricated OPDs can be maintained in the VLC system even after the fabrication method is transferred to a fully-inkjet-printed process deposited on a mechanically flexible substrate. A comparison between rigid and flexible samples shows absolute differences of only 0.2 b s Hz and 2.9 Mb s for the spectral efficiency and the data rate, respectively.
诸如物联网(IoT)、可穿戴设备和无线传感器网络等新兴领域需要实现具有成本效益、高性能且能够贴合不同表面的光电器件。有机半导体及其通过数字印刷技术的沉积为特别适用于这些创新应用领域的光学器件开辟了新的可能性。在这项工作中,我们展示了高性能有机光电二极管(OPD)的制造与表征及其在室内可见光通信(VLC)系统中作为光接收器的应用。我们研究并比较了不同的器件架构,包括旋涂、部分印刷和全印刷的OPD。所展示的器件展现出了领先的性能,并且在VLC系统中作为有机接收器时,其检测速度比之前报道的任何其他OPD都要快。最后,我们的结果表明,即使在将制造方法转换为沉积在机械柔性基板上的全喷墨印刷工艺之后,所制造的OPD在VLC系统中仍能保持高性能。刚性和柔性样品之间的比较表明,光谱效率和数据速率的绝对差异分别仅为0.2 b s Hz和2.9 Mb s。