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Short-Wave Infrared Optoelectronics with Colloidal CdHgSe/ZnCdS Core/Shell Nanoplatelets

  • Hossein Roshan
  • , Anatol Prudnikau
  • , Jinfei Dai
  • , Matilde Cirignano
  • , Francesco De Boni
  • , Mirko Prato
  • , Fabian Paulus
  • , Vladimir Lesnyak
  • , Francesco Di Stasio
  • Italian Institute of Technology
  • Leibniz Institute for Solid State and Materials Research Dresden
  • Technische Universität Dresden

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

Colloidal semiconductor nanocrystals (NCs) are an efficient and cost-effective class of nanomaterials for optoelectronic applications. Advancements in NC-based optoelectronic devices have resulted from progress in synthetic chemistry, adjustable surface properties, and optimized device architectures. Semiconductor nanoplatelets (NPLs) stand out among other NCs due to their precise growth control, yielding uniform thickness with submonolayer roughness. In this study, we demonstrate the versatility of core/shell CdxHg1-xSe/ZnyCd1-yS NPLs for optoelectronic applications in the short-wave infrared (SWIR) spectral range. We employed the very same core/shell NPLs for the fabrication of light-emitting diodes and photodetectors alike, achieving significant performance in both electroluminescence (external quantum efficiency ranging from 7.5% at 1280 nm to 3.8% at 1550 nm) and detection (responsivity of 0.24 A W-1 at 1200 nm).

Original languageEnglish
Pages (from-to)40-47
Number of pages8
JournalACS Photonics
Volume12
Issue number1
DOIs
StatePublished - 15 Jan 2025

Keywords

  • colloidal semiconductor
  • light-emitting diode
  • nanocrystals
  • nanoplatelets
  • near-infrared
  • photodiode
  • short-wave infrared

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