Hot-assisted spin-coating for ultrasmooth PbS colloidal quantum dot film in high-performance NIR photodetectors
Abstract
Lead sulfide (PbS) colloidal quantum dots (CQDs) exhibit significant promise for near-infrared (NIR) photodetectors owing to their size-tunable bandgap and facile solution processability. However, with increasing PbS CQD size, a higher fraction of nonpolar (100) facets is exposed, thereby increasing their susceptibility to agglomeration during both synthesis and film formation, which degrades photodetection performance. Here, we develop a hot-assisted spin-coating technique that precisely regulates the evaporation kinetics of the mixed solvent, enabling single-step deposition of smooth, densely packed CQD films. When performed at 60 °C, this method yields an ultrasmooth film with a root mean square roughness of only 0.947 nm. The resulting p-i-n photodiode exhibits outstanding performance at 1350 nm: a specific detectivity (D*) exceeding 2.5×1011 Jones, a responsivity (R) of 0.21 A/W, and a −3 dB bandwidth of ∼92 kHz. Additionally, the device demonstrates its ability to faithfully resolve fine arterial pulse features under NIR illumination, highlighting its promise for high-sensitivity, real-time NIR photodetection and practical integration into wearable biomedical sensors.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (5)
Xuanyue Huang
School of Physics and Optoelectronics, Xiangtan University 1 , Hunan 411105,
Jiaming Yi
Feng Yang
Department of Chemistry
Hongxing Li
Kai Huang