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Donor dynamics of reverse type I core/shell nanostructure embedded in inorganic and organic polymer matrices

Journal of Nanoparticle Research, ISSN: 1572-896X, Vol: 25, Issue: 8
2023
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    Citations
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    Usage
  • 2
    Captures
  • 1
    Mentions
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    Social Media
Metric Options:   Counts1 Year3 Year

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  • Captures
    2
  • Mentions
    1
    • News Mentions
      1
      • 1

Most Recent News

Study Data from Deemed University Provide New Insights into Nanostructures (Donor Dynamics of Reverse Type I Core/shell Nanostructure Embedded In Inorganic and Organic Polymer Matrices)

2023 AUG 24 (NewsRx) -- By a News Reporter-Staff News Editor at Nanotech Daily -- A new study on Nanotechnology - Nanostructures is now available.

Article Description

The role of surface ligand in tuning the carrier dynamics of reverse type I AlGaAs/ GaAs Core/Shell Nanostructure (CSN) has been investigated by considering two different ligand matrices: (i) inorganic 2D SiO and (ii) organic 2D conjugated polymer (2D-CP) with barrier potentials of 3.9 eV and 0.784 eV, respectively. The effective mass approximation combined with the variation technique is used to calculate the numerical results. The impact of ligand on the binding energy (BE) and diamagnetic susceptibility (χ) of donor is examined for various donor locations (R) at varied core (Rc) and shell (Rs) radii. The spatial extent of carriers (r) manifests the tunneling ability of electrons in the CSNs. The system exhibits diverse behavior and increased stability in the presence of organic 2D-CP and inorganic 2D SiO matrix. The present work will update the significance of ligand passivated reverse type I CSN for effective quantum tunneling devices.

Bibliographic Details

Anitha Balakrishnan; Nithiananthi Perumal; Vignesh Ganesan

Springer Science and Business Media LLC

Chemical Engineering; Physics and Astronomy; Chemistry; Mathematics; Materials Science

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