Zhao Yanglin, Chen Nan, Deng Baozhong, Wu Lifang, Wang Shenghao, Grandidier Bruno, Proust Julien, Plain Jérôme, Xu Tao
Sino-European School of Technology, Shanghai University, 200444 Shanghai, China.
Materials Genome Institute, Shanghai University, 200444 Shanghai, China.
ACS Appl Mater Interfaces. 2023 Oct 25;15(42):49436-49446. doi: 10.1021/acsami.3c11753. Epub 2023 Oct 11.
Near-infrared (NIR) narrowband organic photodetectors (OPDs) can be essential building blocks for emerging applications including wireless optical communication and light detection, but further improvement of their performances remains to be a great challenge. Herein, a light manipulation strategy combining solution-processable gold nanorings (AuNRs)-based hole transporting layer (HTL) and an optical microcavity is proposed to achieve high-performance NIR narrowband OPDs. Optical microcavities with a Fabry-Pérot resonator structure, guided by theoretical simulation, are coupled with PM6:BTP-eC9-based OPDs to exhibit highly tunable NIR selectivity. The further integration of AuNRs array with NIR-customized localized surface plasmon resonance in the HTL of the NIR narrowband OPDs enables evident NIR absorption enhancement, yielding a specific detectivity exceeding 10 Jones (1.5 × 10 Jones, calculated from noise spectral density) at 820 nm, along with a finely selective photoresponse (full width at half-maximum of 80 nm) and a 3-fold increase in photocurrent intensity. Finally, the practical application of our OPDs is demonstrated in an NIR communication system. These results reveal the great potential of an appropriate optical design for developing highly performing NIR narrowband OPDs.
近红外(NIR)窄带有机光电探测器(OPD)可能是包括无线光通信和光检测在内的新兴应用的关键组成部分,但进一步提高其性能仍然是一个巨大的挑战。在此,提出了一种结合基于溶液可加工金纳米环(AuNRs)的空穴传输层(HTL)和光学微腔的光操纵策略,以实现高性能近红外窄带OPD。在理论模拟的指导下,具有法布里-珀罗谐振器结构的光学微腔与基于PM6:BTP-eC9的OPD耦合,表现出高度可调的近红外选择性。在近红外窄带OPD的HTL中,AuNRs阵列与近红外定制的局域表面等离子体共振的进一步集成,能够显著增强近红外吸收,在820 nm处产生超过10琼斯(根据噪声谱密度计算为1.5×10琼斯)的特定探测率,同时具有精细的选择性光响应(半高宽为80 nm)和光电流强度增加3倍。最后,在近红外通信系统中展示了我们的OPD的实际应用。这些结果揭示了适当的光学设计在开发高性能近红外窄带OPD方面的巨大潜力。