Issue 19, 2023

Ultrahigh-resolution quantum dot patterning for advanced optoelectronic devices

Abstract

Quantum dots have attracted significant scientific interest owing to their optoelectronic properties, which are distinct from their bulk counterparts. In order to fully utilize quantum dots for next generation devices with advanced functionalities, it is important to fabricate quantum dot colloids into dry patterns with desired feature sizes and shapes with respect to target applications. In this review, recent progress in ultrahigh-resolution quantum dot patterning technologies will be discussed, with emphasis on the characteristic advantages as well as the limitations of diverse technologies. This will provide guidelines for selecting suitable tools to handle quantum dot colloids throughout the fabrication of quantum dot based solid-state devices. Additionally, epitaxially fabricated single-particle level quantum dot arrays are discussed. These are extreme in terms of pattern resolution, and expand the potential application of quantum dots to quantum information processing.

Graphical abstract: Ultrahigh-resolution quantum dot patterning for advanced optoelectronic devices

Article information

Article type
Feature Article
Submitted
29 Oct 2022
Accepted
24 Jan 2023
First published
27 Jan 2023

Chem. Commun., 2023,59, 2697-2710

Ultrahigh-resolution quantum dot patterning for advanced optoelectronic devices

T. W. Nam, M. Choi and Y. S. Jung, Chem. Commun., 2023, 59, 2697 DOI: 10.1039/D2CC05874J

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