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March 3, 20260 citationsOpen Access

Tailoring Electronic and Magnetic Behaviour of ZnS via (Sm, Co) Co-Doping for Spintronics Applications

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DSD. SaikiaJBJ. P. Borah

Key Points

  • Zn30Sm1Co1S32 exhibits a ferromagnetic state with Sm-Co separation, indicating promising magnetic ordering for spintronics.
  • The total density of states calculations show semiconducting and metallic behavior under different spin states, a crucial insight for design.
  • First principle calculations using the GGA+U approximation provide insights into the electronic structure of Co-doped ZnS materials.
  • Findings highlight half metallic behavior with 100% spin polarization, essential for future electronic applications.

Abstract

Exploring semiconducting materials for applications in the spintronic devices we investigate structural, electronic and magnetic properties of (Sm, Co) Co-doped ZnS diluted magnetic semiconductor (Zn30Sm1Co1S32) by first principle calculations using GGA+U approximation. The total energy calculations depict the ferromagnetic state as the stable state in the Co-doped system with larger Sm-Co separation while for smaller Sm-Co separation the system shows antiferromagnetic character. The total density of states (DOS) calculations demonstrates semiconducting and metallic character in the spin up and spin down states respectively which discloses p-d hybridization between Co-d and S-p ion revealing half metallic behaviour with 100% spin polarization. These findings establish Zn30Sm1Co1S32 as promising material for spintronic applications, combining semiconductor functionality with magnetic ordering and spin polarization essential for next-generation electronic devices.

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Cite This Study

Saikia et al. (2025) studied this question.

synapsesocial.com/papers/69a75b39c6e9836116a222a0https://doi.org/10.57647/inl.2025.1502.07
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