Zhang Yu, Qin Zhengsheng, Gao Haikuo, Wang Tianyu, Gao Can, Zhang Xiaotao, Hu Wenping, Dong Huanli
Beijing National Laboratory for Molecular Sciences, Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.
School of Chemical Sciences, University of Chinese Academy of Sciences, Beijing, 100049, China.
Adv Mater. 2024 Aug;36(32):e2404309. doi: 10.1002/adma.202404309. Epub 2024 Jun 10.
Developing high-performance polarization-sensitive ultraviolet photodetectors is crucial for their application in military remote sensing, detection, bio-inspired navigation, and machine vision. However, the significant absorption in the visible light range severely limits the application of polarization-sensitive ultraviolet photodetectors, such as high-quality anti-interference imaging. Here, based on a wide-bandgap organic semiconductor single crystal (trans-1,2-bis(5-phenyldithieno[2,3-b:3',2'-d]thiophen-2-yl)ethene, BPTTE), high-performance polarization-sensitive solar-blind ultraviolet photodetectors with a dichroic ratio close to 4.26 are demonstrated. The strong anisotropy of 2D grown BPTTE single crystals in molecular vibration and optical absorption is characterized by various techniques. Under voltage modulation, stable and efficient detection of polarized light is demonstrated, attributed to the intrinsic anisotropy of transition dipole moment in the bc crystal plane, rather than other factors. Finally, high-contrast polarimetric imaging and anti-interference imaging are successfully demonstrated based on BPTTE single crystal photodetectors, highlighting the potential of organic semiconductors for polarization-sensitive solar-blind ultraviolet photodetectors.
开发高性能偏振敏感型紫外光探测器对于其在军事遥感、探测、仿生导航和机器视觉中的应用至关重要。然而,在可见光范围内的显著吸收严重限制了偏振敏感型紫外光探测器的应用,如高质量抗干扰成像。在此,基于宽带隙有机半导体单晶(反式-1,2-双(5-苯基二噻吩并[2,3-b:3',2'-d]噻吩-2-基)乙烯,BPTTE),展示了二向色比接近4.26的高性能偏振敏感型日盲紫外光探测器。通过各种技术表征了二维生长的BPTTE单晶在分子振动和光吸收方面的强各向异性。在电压调制下,展示了对偏振光的稳定高效检测,这归因于bc晶面中跃迁偶极矩的固有各向异性,而非其他因素。最后,基于BPTTE单晶光探测器成功展示了高对比度偏振成像和抗干扰成像,突出了有机半导体在偏振敏感型日盲紫外光探测器方面的潜力。