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Updated: Sep 4, 2026

Polarization-Sensitive Two-Photon Microscopy for a Label-Free Amyloid Structural Characterization
Published on: September 8, 2023
Synergistic Dual-Mechanism Self-Powered Photodetector with Broadband Polarization Sensitivity for Multifunctional
Jiaxuan Wang1, Yingtian Xu1, Heng Liu2
1National Key Laboratory of Semiconductor Laser, Changchun University of Science and Technology, Changchun130022, People's Republic of China.
Abstract:
Two-dimensional (2D) photodetectors are a research focus in optoelectronics owing to their excellent flexibility and integration. However, conventional 2D photodetectors typically rely on a single photoresponse mechanism, and studies on synergizing multiple physical mechanisms to enhance detection performance remain insufficient. Herein, we demonstrate a high-performance self-powered Gr/InSe/MoS2 van der Waals heterojunction photodetector with a unilateral depletion n-n junction. By rationally integrating graphene, InSe, and MoS2, the device realizes remarkable synergistic enhancement by dual-mechanism of photovoltaic and photothermoelectric effects. Benefiting from the thermoelectric field induced by the temperature gradient in MoS2 aligns with the built-in field of the n-n junction, effectively promote efficient photocarrier separation and significantly improving the photoresponse. Under zero-bias operation, it exhibits a broadband photoresponse from 355 to 1064 nm, a peak responsivity of 650 mA W-1 at 532 nm, an ultralow dark current of 5.3 × 10-13 A, and a fast rise time of 15.6 μs. Meanwhile, the device displays distinct polarization sensitivity originating from the in-plane anisotropy of InSe. It is successfully applied to image encryption, polarization imaging, and near-infrared optical communication, providing a promising strategy for designing advanced multifunctional self-powered photodetectors.

