MoS2/Quantum Dot Hybrid Photodetectors on Flexible Substrates
Creators
- 1. AMO GmbH
- 2. RWTH Aachen University
- 3. Fraunhofer Center for Applied Nanotechnology CAN
- 4. AIXTRON SE
Description
MoS 2 is a semiconducting transition-metal dichalcogenide and an attractive candidate for optoelectronics and flexible electronics due to its strong excitonic interactions, low dark current (IDark) and high mechanical strength. Photo detectors (PDs) based on MoS 2 have been demonstrated with high responsivities and low IDark [1]–[3]. However, long response times, often in the range of several seconds, severely limit their use for imaging applications. Hybrid structures made of MoS 2 and colloidal quantum dots (CQDs) have been shown to improve the response times down to the ms range [4]. These devices were made from exfoliated materials and on rigid substrate. Here, we present hybrid MoS 2 /CQDs based PDs with high performance using a scalable fabrication approach on flexible polyimide (PI) substrates with metalorganic vapor phase epitaxy (MOVPE) grown MoS 2 . Our MoS 2 /CQDs PDs show fast response times in the ms range and withstand mechanical strain, which provides evidence that our scalable process on PI substrates is a promising approach towards flexible optoelectronics, e.g. wearable sensors or healthcare systems.
Files
2022 03 25 Ozan Yakar DRC final.pdf
Files
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Additional details
Funding
- GrapheneCore3 – Graphene Flagship Core Project 3 881603
- European Commission
- QUEFORMAL – Quantum Engineering for Machine Learning 829035
- European Commission
- MISEL – MULTISPECTRAL INTELLIGENT VISION SYSTEM WITH EMBEDDED LOW-POWER NEURAL COMPUTING 101016734
- European Commission
- 2Exciting – Developing optoelectronics in two-dimensional semiconductors 956813
- European Commission