Magnetically Controlled Anisotropic Light Emission of DNA-Functionalized Supraparticles

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Abstract

In this article, we show the DNA-functionalization of supraparticles, form their network, and manipulate the optical features of these networks by applying a magnetic field. We start with preparing the supraparticles (SPs) of semiconducting InP/ZnSeS/ZnS quantum dots (QDs), plasmonic silver nanoparticles, and superparamagnetic iron oxide nanoparticles. These SPs are prepared by employing azide-functionalized amphiphilic diblock or triblock copolymers as well as by using their combinations. Subsequently, we attached single-stranded DNAs to these SPs by employing copper-free click chemistry. Next, we hybridized DNA-coated QD SPs with the iron oxide SPs and formed a network. By applying a magnetic field, we restructured this network such that the iron oxide SPs are aligned. This led to an anisotropic emission from the QD SPs with a polarization ratio of 1.9. This study presents a proof-of-concept scheme to control the optical features of a self-assembled supraparticle system using an external interaction. We believe that our work will further contribute to the utilization of smart self-assembly techniques in optics and photonics.

Description

Erdem, Talha/0000-0003-3905-376X; Mutlugun, Evren/0000-0003-3715-5594

Keywords

DNA-Driven Self-Assembly, Nanoparticles, Supraparticles, Semiconductor Nanocrystals, Metal Nanoparticles, Magnetic Nanoparticles

Fields of Science

0301 basic medicine, 03 medical and health sciences, 02 engineering and technology, 0210 nano-technology

Citation

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OpenCitations Citation Count
2

Volume

47

Issue

11

Start Page

1084

End Page

1091