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Fabrication of a New Hybrid Coronene/n-Si Structure by Using Spin Coating Technique and its Photoresponse and Admittance Spectroscopy Studies

Silicon · Haziran 2020

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YÖKSİS Kayıtları
Fabrication of a New Hybrid Coronene/n-Si Structure by Using Spin Coating Technique and its Photoresponse and Admittance Spectroscopy Studies
SILICON · 2020 SCI-Expanded
DOKTOR ÖĞRETİM ÜYESİ ÜMMÜHAN AKIN →
Fabrication of a New Hybrid Coronene/n-Si Structure by Using Spin Coating Technique and its Photoresponse and Admittance Spectroscopy Studies
SILICON · 2020 SCI-Expanded
PROFESÖR ÖMER FARUK YÜKSEL →

Makale Bilgileri

DergiSilicon
Yayın TarihiHaziran 2020
Cilt / Sayfa12 · 1399-1405
Özet Coronene/n-Si Schottky structure has been fabricated by Coronene thin film deposited on n-Si substrate using the spin coating technique. The current-voltage (I-V) characteristics of the diode have been evaluated under various illumination intensities to determine photodiode behavior. Photovoltaic parameters of the fabricated diode have been calculated at different illumination intensities. The Coronene/n-Si diode presents a photovoltaic status with a maximum short-circuit current (Isc) of 13.1 μA and open circuit voltage (Voc) of 0.16 V under 100 mW/cm2 illumination intensity. The recombination process of the Coronene/n-Si diode shows the existence of bimolecular recombination mechanism associated with the trap levels in the band gap. Also, the series resistance and interface state density distribution of the photodiode have been estimated by capacitance-voltage (C-V) and conductance-voltage (G-V) characteristics at various frequencies. The experimental results indicated that the Al/Coronene/n-Si diode can be used as a photodiode in optoelectronic and photovoltaic applications.

Yazarlar (4)

1
Ümmühan Akın
2
Ömer Faruk Yüksel
3
E. Taşcı
4
Nihat Tuğluoğlu

Anahtar Kelimeler

Admittance spectroscopy Coronene Photodiode Photoresponse

Kurumlar

Giresun Üniversitesi
Giresun Turkey
Selçuk Üniversitesi
Selçuklu Turkey

Metrikler

23
Atıf
4
Yazar
4
Anahtar Kelime

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