Issue 46, 2022, Issue in Progress

Structural, optical, and magnetic properties of Ag+, Mn+ and Ar+ ions implanted ZnO thin films: effect of implantation dose and stopping energy

Abstract

Herein, we systematically studied the effect of various excitation processes on the structural, optical, and magnetic properties of ZnO films implanted with 80 keV Ar+, 110 keV Mn+, and 190 keV Ag+ ions. Four different doses of 1 × 1013, 1 × 1014, 1 × 1015, and 2 × 1016 ions per cm2 were used for implantation. It was observed that the structural, optical, and magnetic properties of the implanted samples were dominantly affected at the highest dose of 2 × 1016 ions per cm2. For lower doses, insignificant changes in these properties were observed. A comparison of various processes involved in the implantation process shows that both the electronic excitation and nuclear excitation processes are responsible for the changes in the structural, optical, and magnetic properties of the implanted ZnO films.

Graphical abstract: Structural, optical, and magnetic properties of Ag+, Mn+ and Ar+ ions implanted ZnO thin films: effect of implantation dose and stopping energy

Supplementary files

Article information

Article type
Paper
Submitted
30 Aug 2022
Accepted
10 Oct 2022
First published
18 Oct 2022
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2022,12, 29666-29676

Structural, optical, and magnetic properties of Ag+, Mn+ and Ar+ ions implanted ZnO thin films: effect of implantation dose and stopping energy

W. C. Lim, J. P. Singh, J. Song, T. Seong and K. H. Chae, RSC Adv., 2022, 12, 29666 DOI: 10.1039/D2RA05430B

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