Optical Properties of ZnS and Effect of Doping with Transition Elements

Authors

  • Maria Nisar
  • Mubushra Umbreen
  • Sunaina Rafique
  • Bushra Liaqat
  • Kiran Batool
  • Iqra Shahzadi
  • Yasmin Zahra
  • Hafiza Batool

DOI:

https://doi.org/10.52700/jn.v1i01.12

Abstract

By the help of density functional theory for a Cu doped ZnS compound the charge density,
Fermi surface and electronic structure have been examined. We have used (FP-LAPW)
method, to deal with interchange relationship potential for solving of kohn-sham equations.
We apply generalized gradient approximation (GGA), local density approximation (LDA)
and Engel-Vosko GGA (EVGGA). Cu doped ZnS compound confirms that nature of
material is metallic and Fermi energy (EF) is obtained by the overlapping of Cu-p and Znd state. At Fermi energy (EF) calculated density of states is 51.932, 18.655 and 13.235 states/ev, and low-temperature electronic specific heat co-efficient (?) is found to be
9.008mJ/mol-K2 for GGA, 3.236mJ/mol-K2 for LDA, and it was 2.295mJ/mol-K2 for
EVGGA respectively. The thermal properties and optical constant were also discussed and
calculated.

Published

2020-06-22

How to Cite

Nisar, M. ., Umbreen, M. ., Rafique, S. ., Liaqat, B. ., Batool, K. ., Shahzadi, I. ., Zahra, Y. ., & Batool, H. . (2020). Optical Properties of ZnS and Effect of Doping with Transition Elements. JOURNAL OF NANOSCOPE (JN), 1(01), 21-33. https://doi.org/10.52700/jn.v1i01.12