Moein Tania, Gailevičius Darius, Katkus Tomas, Ng Soon Hock, Lundgaard Stefan, Moss David J, Kurt Hamza, Mizeikis Vygantas, Staliūnas Kȩstutis, Malinauskas Mangirdas, Juodkazis Saulius
Optical Sciences Centre, Swinburne University of Technology, John St., Hawthorn, VIC 3122, Australia.
The ARC Training Centre in Surface Engineering for Advanced Materials (SEAM), School of Science, Swinburne University of Technology, Hawthorn, VIC 3122, Australia.
Nanomaterials (Basel). 2020 Feb 25;10(3):407. doi: 10.3390/nano10030407.
A broadband graphene-on-Si3N4-membrane photodetector for the visible-IR spectral range is realised by simple lithography and deposition techniques. Photo-current is produced upon illumination due to presence of the build-in potential between dissimilar metal electrodes on graphene as a result of charge transfer. The sensitivity of the photo-detector is ∼ 1 . 1 μ A/W when irradiated with 515 and 1030 nm wavelengths; a smaller separation between the metal contacts favors gradient formation of the built-in electric field and increases the efficiency of charge separation. This optically-thin graphene-on-membrane photodetector and its interdigitated counterpart has the potential to be used within 3D optical elements, such as photonic crystals, sensors, and wearable electronics applications where there is a need to minimise optical losses introduced by the detector.
一种用于可见-红外光谱范围的宽带硅氮化硅薄膜上石墨烯光电探测器,通过简单的光刻和沉积技术实现。由于石墨烯上不同金属电极之间存在内建电势,光照时会产生光电流,这是电荷转移的结果。当用515和1030纳米波长照射时,该光电探测器的灵敏度约为1.1微安/瓦;金属触点之间较小的间距有利于内建电场的梯度形成,并提高电荷分离效率。这种光学薄的薄膜上石墨烯光电探测器及其叉指式对应物有潜力用于三维光学元件中,如光子晶体、传感器和可穿戴电子设备应用,在这些应用中需要尽量减少探测器引入的光学损耗。