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Updated: Jul 2, 2026

High-speed Continuous-wave Stimulated Brillouin Scattering Spectrometer for Material Analysis
Published on: September 22, 2017
A low-cost broadband photodetector based on CsPbBr3quantum dots/transfer-free eco-friendly graphene heterostructures
Yi-Chia Cheng1, Chih-Yu Lin2, Chia-Hsuan Tseng1
1Undergraduate Program in the College of Electrical Engineering of Computer, Chung Yuan Christian University, 200, Zhongbei Rd., Zhongli Dist., Taoyuan City, 320314, TAIWAN.
Abstract:
We have successfully demonstrated CsPbBr3perovskite quantum dots (QDs)/transfer-free eco-friendly (TFEF) graphene heterostructures with broadband and fast photoresponse. At first, the TFEF graphene is grown directly on the SiO2/Si substrates in an atmospheric pressure chemical vapor deposition (APCVD) system with the copper-foil wrapping methods and camphor precursors. Raman mapping image (15 × 15μm2) showed TFEF graphene with high coverage across the surface (∼65% single-layer graphene, ∼15% bilayer graphene, and ∼20% multilayer graphene). After that, CsPbBr3QDs were synthesized and then spin-coated on the TFEF graphene surface to form heterostructures. Compared to pure CsPbBr3QD-based photodetectors (PDs), CsPbBr3QDs/TFEF graphene-based PDs show a higher photo-to-dark current ratio of ∼7.2 at 2 V white light illumination (112 mW cm-2). Furthermore, the CsPbBr3QDs/TFEF graphene-based PDs show a broadband photoresponse range from ultraviolet to near-infrared with a peak responsivity reaching up to 32 mA W-1, a high detectivity (2.2 × 1010cm·Hz1/2/W) and fast operation speed (rise/fall time: ∼7/∼ 14 ms). This study opens avenues to develop low-cost and rapid fabrication processes of perovskite/2D nanomaterial-based PDs for fast optical communication, image capture, and flame detection applications.

