Justin Ondry
Postdoctoral Fellow
Talapin Group
University of Chicago
Date Departed IMOD: 5/1/2024
Next Steps: Process Engineer at Lam Research
Structural and Compositional Evolution of Colloidal In1–xGaxP1–yAsy Nanocrystals during Cation Exchange Revealed by Electron Microscopy

Structural and Compositional Evolution of Colloidal In1–xGaxP1–yAsy Nanocrystals during Cation Exchange Revealed by Electron Microscopy

Design of Zn Chalcogenide Shells for Emissive Ga-Rich In1–XGaXAs Quantum Dots Synthesized in Molten Salts

Design of Zn Chalcogenide Shells for Emissive Ga-Rich In1–XGaXAs Quantum Dots Synthesized in Molten Salts

Exciton-phonon coupling and phonon-assisted exciton relaxation dynamics in In1-xGaxP quantum dots

Exciton-phonon coupling and phonon-assisted exciton relaxation dynamics in In1-xGaxP quantum dots

Colloidal Chemistry in Molten Inorganic Salts: Direct Synthesis of III–V Quantum Dots via Dehalosilylation of (Me3Si)3Pn (Pn = P, As) with Group III Halides

Colloidal Chemistry in Molten Inorganic Salts: Direct Synthesis of III–V Quantum Dots via Dehalosilylation of (Me3Si)3Pn (Pn = P, As) with Group III Halides

Ultrafast Symmetry Control in Photoexcited Quantum Dots

Ultrafast Symmetry Control in Photoexcited Quantum Dots

IMOD researchers unlock a ‘new synthetic frontier’ for quantum dots

IMOD researchers unlock a ‘new synthetic frontier’ for quantum dots

Reductive pathways in molten inorganic salts enable colloidal synthesis of III-V semiconductor nanocrystals

Reductive pathways in molten inorganic salts enable colloidal synthesis of III-V semiconductor nanocrystals

Synthesis of Ternary and Quaternary Group III-Arsenide Colloidal Quantum Dots via High-Temperature Cation Exchange in Molten Salts: The Importance of Molten Salt Speciation

Synthesis of Ternary and Quaternary Group III-Arsenide Colloidal Quantum Dots via High-Temperature Cation Exchange in Molten Salts: The Importance of Molten Salt Speciation

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