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On the frequency and (ZnCdNiTiO2) nanocomposite interlayer effects on electrical parameters and conduction mechanism in Al/(ZnCdNiTiO2)/p–Si (MIS) structures

  • 01-12-2025
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Abstract

This study delves into the effects of (ZnCdNiTiO2) nanocomposite interlayers on the electrical parameters and conduction mechanisms of Al/(ZnCdNiTiO2)/p–Si (MIS) structures. The research focuses on the frequency and voltage-dependent behaviors of these structures, particularly the impact on interface traps (Nss), series resistance (Rs), and the overall performance of the devices. The study employs impedance measurements (C–V–f and G/ω–V–f) across a broad range of frequencies (1 kHz-1 MHz) and voltages (±2.5 V) to provide a thorough analysis. Key findings include the exponential increase of barrier height (ΦB) and depletion layer width (WD) with frequency, while the acceptor atom concentration (NA) decreases. The voltage-dependent characteristics of Nss and their lifetimes (τ) are also calculated, revealing a distinctive peak at about 0.55 V and a reduction in τ with increasing voltage. The study concludes that the use of (ZnCdNiTiO2) interlayers significantly improves device performance, making them a viable alternative to conventional insulating layers. This research not only advances the understanding of Nss and Rs effects in Schottky diodes with nanocomposite interlayers but also fills a gap in the literature regarding frequency and voltage-dependent electrical characteristics, providing a foundation for future MIS device optimization.

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Title
On the frequency and (ZnCdNiTiO2) nanocomposite interlayer effects on electrical parameters and conduction mechanism in Al/(ZnCdNiTiO2)/p–Si (MIS) structures
Authors
K. Yıldız
S. Altındal Yerişkin
Sabreen A. Hameed
E. Erbilen Tanrıkulu
F. Yakuphanoğlu
Publication date
01-12-2025
Publisher
Springer US
Published in
Journal of Materials Science: Materials in Electronics / Issue 34/2025
Print ISSN: 0957-4522
Electronic ISSN: 1573-482X
DOI
https://doi.org/10.1007/s10854-025-16257-x
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