Electrical Characterization of Si/ZnO Nanorod PN Heterojunction Diode

Author:

Faraz Sadia Muniza1ORCID,Shah Wakeel1,Alvi Naveed Ul Hassan2,Nur Omer3ORCID,Wahab Qamar Ul4

Affiliation:

1. Electronic Design Center, Department of Electronic Engineering, NED University of Engineering and Technology, Karachi-75270, Pakistan

2. Laboratory of Organic Electronics, Department of Science and Technology, Linköping University, Linköping S-60174, Sweden

3. Department of Science and Technology (ITN), Faculty of Science & Engineering, Linkoping University, Linköping, Sweden

4. University of Technology, Nowshera-24100, Pakistan

Abstract

The electrical characterization of p-Silicon (Si) and n-Zinc oxide (ZnO) nanorod heterojunction diode has been performed. ZnO nanorods were grown on p-Silicon substrate by the aqueous chemical growth (ACG) method. The SEM image revealed high density, vertically aligned hexagonal ZnO nanorods with an average height of about 1.2 μm. Electrical characterization of n-ZnO nanorods/p-Si heterojunction diode was done by current-voltage (I-V), capacitance-voltage (C-V), and conductance-voltage (G-V) measurements at room temperature. The heterojunction exhibited good electrical characteristics with diode-like rectifying behaviour with an ideality factor of 2.7, rectification factor of 52, and barrier height of 0.7 V. Energy band (EB) structure has been studied to investigate the factors responsible for small rectification factor. In order to investigate nonidealities, series resistance and distribution of interface state density (NSS) below the conduction band (CB) were extracted with the help of I-V and C-V and G-V measurements. The series resistances were found to be 0.70, 0.73, and 0.75 KΩ, and density distribution interface states from 8.38 × 1012 to 5.83 × 1011 eV−1 cm−2 were obtained from 0.01 eV to 0.55 eV below the conduction band.

Funder

NED University of Engineering and Technology

Publisher

Hindawi Limited

Subject

Condensed Matter Physics

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