Encapsulation of Cadmium‐Free InP/ZnSe/ZnS Quantum Dots in Poly(LMA‐co‐EGDMA) Microparticles via Co‐flow Droplet Microfluidics

Author:

Babkin Iurii Alekseevich1ORCID,Udepurkar Aniket Pradip2ORCID,Van Avermaet Hannes3ORCID,de Oliveira‐Silva Rodrigo4ORCID,Sakellariou Dimitrios4ORCID,Hens Zeger3ORCID,Van den Mooter Guy5ORCID,Kuhn Simon2ORCID,Clasen Christian1ORCID

Affiliation:

1. Department of Chemical Engineering, Soft Matter, Rheology and Technology (SMaRT) KU Leuven Celestijnenlaan 200F Leuven 3001 Belgium

2. Department of Chemical Engineering Process Engineering for Sustainable Systems (ProcESS) KU Leuven Celestijnenlaan 200F Leuven 3001 Belgium

3. Physics and Chemistry of Nanostructures (PCN) University of Ghent Krijgslaan 281‐S3 Gent 9000 Belgium

4. Membrane Separations, Adsorption, Catalysis, and Spectroscopy for Sustainable Solutions (cMACS) KU Leuven Celestijnenlaan 200F Leuven 3001 Belgium

5. Department of Pharmaceutical and Pharmacological Sciences Drug Delivery and Disposition KU Leuven Campus Gasthuisberg ON2, Herestraat 49 b921 Leuven 3000 Belgium

Abstract

AbstractQuantum dots (QDs) are semiconductor nanocrystals that are used in optoelectronic applications. Most modern QDs are based on toxic metals, for example Cd, and do not comply with the European Restriction of Hazardous Substances regulation of the European Union. Latest promising developments focus on safer QD alternatives based on elements from the III–V group. However, the InP‐based QDs lack an overall photostability under environmental influences. One design path of achieving stability is through encapsulation in cross‐linked polymer matrices with the possibility to covalently link the matrix to surface ligands of modified core–shell QDs. The work focuses on the formation of polymer microbeads suitable for InP‐based QD encapsulation, allowing for an individual protection of QDs and an improved processibility via this particle‐based approach. For this, a microfluidic based method in the co‐flow regime is used that consists of an oil‐in‐water droplet system in a glass capillary environment. The generated monomer droplets are polymerized in‐flow into poly(LMA‐co‐EGDMA) microparticles with embedded InP/ZnSe/ZnS QDs using a UV initiation. They demonstrate how a successful polymer microparticle formation via droplet microfluidics produces optimized matrix structures leading to a distinct photostability improvement of InP‐based QDs compared to nonprotected QDs.

Publisher

Wiley

Subject

General Materials Science,General Chemistry

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