Light-assisted hierarchical fabrication of two-dimensional surfaces using DNA-functionalized semiconductor nanocrystal quantum dots
Zeynep Senel, Ruby Phul, Ahmet Faruk Yaz{\i}c{\i}, Akrema, Emirhan, Taze, Talha Erdem

TL;DR
This paper introduces a light-assisted, DNA-driven method for fabricating two-dimensional nanostructures of quantum dots on substrates, enabling precise, reversible control of optical properties for nanophotonics and bioengineering applications.
Contribution
It presents a novel laser-based self-assembly technique for creating 2D DNA-QD nanostructures with controlled optical features, advancing nanofabrication methods.
Findings
Laser irradiation induces localized heating, enabling pattern formation.
Optical properties of DNA-functionalized QDs can be actively tuned.
The method allows reversible and precise nanostructure fabrication.
Abstract
The development of novel strategies for self-assembly in the field of nanotechnology has witnessed remarkable progress in recent years. Here, we present a DNA-driven programmable self-assembly to fabricate the targeted nanophotonic structures. The exploitation of the programmable properties of DNA and the unique optical properties of QDs unfolds the ability to engineer complex nanostructures with laser irradiation. The main advantages of this method are the precise interaction of colloidal quantum dots (QDs)/nanoparticles (NPs) with the substrate and its reversibility in tuning the temperature of the medium. Two-dimensional (2D) hierarchical patterns of QD-ssDNA (ss-single stranded) conjugates were formed over the amine-ssDNA (NH-ssDNA complementary to the ssDNA conjugated with QDs) coated glass substrates using the laser (green laser light) radiation for3 or4 h. The localised heating…
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Taxonomy
TopicsQuantum Dots Synthesis And Properties · Advanced biosensing and bioanalysis techniques
