ULTRAVIOLET ILLUMINATION RESPONSIVITY OF THE Au/n-Si DIODES WITH AND WITHOUT POLY (LINOLENIC ACID)-G-POLY (CAPROLACTONE)-G-POLY (T-BUTYL ACRYLATE) INTERFACIAL LAYER
Ümi̇t Gürsel,
Songül Taran,
Muharrem Gökçen,
Yurdagül Ari and
Abdulkadi̇r Alli
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Ümi̇t Gürsel: Department of Physics, Faculty of Arts and Sciences, Düzce University, Düzce 81620, Turkey
Songül Taran: Department of Physics, Faculty of Arts and Sciences, Düzce University, Düzce 81620, Turkey
Muharrem Gökçen: Department of Physics, Faculty of Arts and Sciences, Düzce University, Düzce 81620, Turkey
Yurdagül Ari: #x2020;Department of Chemistry, Faculty of Arts and Sciences, Düzce University, Düzce 81620, Turkey
Abdulkadi̇r Alli: #x2020;Department of Chemistry, Faculty of Arts and Sciences, Düzce University, Düzce 81620, Turkey
Surface Review and Letters (SRL), 2020, vol. 27, issue 09, 1-7
Abstract:
Au/n-Si (MS) and Au/Poly (linolenic acid)-g-poly (caprolactone)-g-poly (t-butyl acrylate) (PLilPCLPtBA)/n-Si (MPS) diodes were fabricated to investigate the electrical and responsivity effects of interfacial layer on the diodes under ultra violet (UV) illumination. Electrospinning method was used for coating of the PLilPCLPtBA polymer layer on n-Si single crystal as nanofibers. Surface formation and nanofiber characteristics of the polymer layer were investigated by an electron microscope. The current-voltage (I–V) measurements of the MS and MPS diodes were carried out in dark and under UV (365 nm) illumination conditions at room temperature. Basic electrical parameters of the diodes; such as reverse bias saturation current (I0), zero bias barrier height (ΦB0), ideality factor (n), series resistance (Rs) and interface state density (Nss) were extracted from the experimental I–V measurements by thermionic emission and Norde equations. Also, power law of the photocurrents (Ipc) and responsivity (R) behavior were obtained and given comparatively.
Keywords: Graft copolymer; photodiode; Schottky diode; UV illumination; Au/n-Si (search for similar items in EconPapers)
Date: 2020
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DOI: 10.1142/S0218625X1950207X
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