Enhanced optoelectronic properties of magnetron sputtered ITO/Ag/ITO multilayers by electro-annealing

Author:

Uyanik Zemzem1ORCID,Turkoglu Fulya12ORCID,Koseoglu Hasan13ORCID,Ekmekcioglu Merve14,Ata Bengu1,Demirhan Yasemin1ORCID,Ozdemir Mehtap4ORCID,Aygun Gulnur1ORCID,Ozyuzer Lutfi14ORCID

Affiliation:

1. Department of Physics, Izmir Institute of Technology, 35430 Urla, Izmir, Turkey

2. Department of Metallurgical and Materials Engineering, Iskenderun Technical University, 31200 Iskenderun, Hatay, Turkey

3. ISTE Center for Science and Technology Studies and Research (ISTE-CSTSR), Iskenderun Technical University, 31200 Iskenderun, Hatay, Turkey

4. Teknoma Technological Materials Ltd. IZTEKGEB, IZTECH Campus, 35430 Urla, Izmir, Turkey

Abstract

Indium tin oxide/silver/indium tin oxide (ITO/Ag/ITO) multilayers have attracted much attention to fulfill the growing need for high-performance transparent conducting oxide electrodes. To make these transparent multilayers work better, electro-annealing, which is a method of self-heating by electric current, can be effective. Moreover, the effect of current on ITO/Ag/ITO multilayers should be investigated to make sure that electronic devices will be reliable over their lifetime. In this study, ITO/Ag/ITO multilayer electrodes with varying Ag thicknesses were grown by DC magnetron sputtering at room temperature. Structural, optical, and electrical properties of these multilayers were investigated before and after electro-annealing. Measurement results revealed that improved optical transmittance and sheet resistance can be obtained by the optimization of Ag thickness for the as-grown ITO/Ag/ITO layers. The highest figure of merit (FoM) value of 17.37 × 10−3 Ω−1 with optical transmittance of 85.15% in the visible region and sheet resistance of 11.54 Ω/□ was obtained for the Ag thickness of 16.5 nm for as-grown samples. The electro-annealing of as-grown ITO/Ag/ITO multilayers led to improved optical behavior of the multilayer structure over a wide spectral range, especially in the near-infrared range. Electro-annealing also provided an improvement in the crystallinity and sheet resistance of the electrodes. The improvement of the electrical and optical properties of the structure enabled a FoM of 23.07 × 10−3 Ω−1 with the optical transmittance of 86.80% in the visible region and sheet resistance of 10.52 Ω/□. The findings of this work provide proper knowledge of the properties of ITO/Ag/ITO multilayers under electrical current and suggest that the overall performance of the multilayers can be improved by the electro-annealing process.

Publisher

American Vacuum Society

Subject

Materials Chemistry,Electrical and Electronic Engineering,Surfaces, Coatings and Films,Process Chemistry and Technology,Instrumentation,Electronic, Optical and Magnetic Materials

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