DFT+U investigation of Zr-absorbed Fe3O4 surface
Maria Saddiqa (60718)
DFT+U investigation of Zr-absorbed Fe3O4 surface electronic, magnetic, and adsorption properties for enhanced renewable energy applications - Islamabad (Unpublished) 2025 - xv ,70 p. : ill. ; 30 cm. +CD
Submitted in partial fulfillment of the requirements for the degree of Master of Philosophy in Physics to the Department of Basic Sciences. Includes bibliographical references. Thesis supervisor: Dr. Nasir Mehboob
Thesis (M.Phil)--Riphah International University, 2025
English
Physics--Renewable energy--Elecrtronic--DFT+U--Fe3O4--DBS--FEAS
530 / MAR
DFT+U investigation of Zr-absorbed Fe3O4 surface electronic, magnetic, and adsorption properties for enhanced renewable energy applications - Islamabad (Unpublished) 2025 - xv ,70 p. : ill. ; 30 cm. +CD
Submitted in partial fulfillment of the requirements for the degree of Master of Philosophy in Physics to the Department of Basic Sciences. Includes bibliographical references. Thesis supervisor: Dr. Nasir Mehboob
Thesis (M.Phil)--Riphah International University, 2025
English
Physics--Renewable energy--Elecrtronic--DFT+U--Fe3O4--DBS--FEAS
530 / MAR