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Electronic and Optical Properties of Ag<sub>2</sub>Se Quantum Dots as Obtained via Quantum Calculations

POSTER

Abstract

Quantum dots are of interest as optically-active elements for use in optoelectronic devices. Herein, we report on a combined experimental and theoretical study of Ag2Se quantum dots (QDs). Experimentally, we have observed a size-dependent phase transition from an orthorhombic crystal phase in the bulk to a metastable tetragonal phase for crystallites below 40-nm in size. The theoretical studies are performed on finite-sized nanocrystals using a linear response theory within the time-dependent local density approximation, as implemented in VASP package. The calculated parameters include the absorption spectra, optical band gaps, ionization and transition energies of the tetragonal phase. All the electronic and optical properties are computed for QDs with varying sizes, and the effect of size on the resulting properties is analyzed. Theoretical data are compared with the experimental results obtained on disordered arrays of Ag2Se QDs.

Presenters

  • Maxim Makeev

    Department of Materials Science and Chemical Engineering, Stony Brook University, Stony Brook, NY 11794

Authors

  • Nav Nidhi Rajput

    Department of Materials Science and Chemical Engineering, Stony Brook University, Stony Brook, NY 11794

  • Maxim Makeev

    Department of Materials Science and Chemical Engineering, Stony Brook University, Stony Brook, NY 11794

  • Michael Scimeca

    Department of Chemical and Biomolecular Engineering, New York University, Brooklyn, NY 11201

  • Shlok Joseph Paul

    Department of Chemical and Biomolecular Engineering, New York University, Brooklyn, NY 11201

  • Ayaskanta Sahu

    Department of Chemical and Biomolecular Engineering, New York University, Brooklyn, NY 11201