Vui lòng dùng định danh này để trích dẫn hoặc liên kết đến tài liệu này: https://dspace.ctu.edu.vn/jspui/handle/123456789/39481
Nhan đề: Electrical and Structural Properties of All-Sputtered Al/SiO₂/p-GaN MOS Schottky Diode
Tác giả: Thi, Tran Anh Tuan
Kuo, Dong-Hau
Cao, Phuong Thao
Pham, Quoc-Phong
Vinh, Khanh Nghi
Tran, Nguyen Phuong Lan
Từ khoá: MOS Schottky diode
SBH
I–V measurement
C–V measurement
Cheung’s and Norde’s methods
Năm xuất bản: 2019
Tùng thư/Số báo cáo: Open Access Journals;Vol. 9 No. 10 .- P.1-10
Tóm tắt: The all-sputtered Al/SiO₂/p-GaN metal-oxide-semiconductor (MOS) Schottky diode was fabricated by the cost-effective radio-frequency sputtering technique with a cermet target at 400 °C. Using scanning electron microscope (SEM), the thicknesses of the electrodes, insulator SiO₂ layer, and p-GaN were found to be ~250 nm, 70 nm, and 1 µm, respectively. By Hall measurement of a p-Mg-GaN film on an SiO₂/Si (100) substrate at room temperature, the hole’s concentration (Np) and carrier mobility (μ) were found to be Np = 4.32 × 1016 cmˉ³ and μ = 7.52 cm2·Vˉ¹·sˉ¹, respectively. The atomic force microscope (AFM) results showed that the surface topography of the p-GaN film had smoother, smaller grains with a root-mean-square (rms) roughness of 3.27 nm. By I–V measurements at room temperature (RT), the electrical properties of the diode had a leakage current of ~4.49 × 10−8 A at −1 V, a breakdown voltage of −6 V, a turn-on voltage of ~2.1 V, and a Schottky barrier height (SBH) of 0.67 eV. By C–V measurement at RT, with a frequency range of 100–1000 KHz, the concentration of the diode’s hole increased from 3.92 × 1016 cmˉ³ at 100 kHz to 5.36 × 1016 cmˉ³ at 1 MHz, while the Fermi level decreased slightly from 0.109 to 0.099 eV. The SBH of the diode at RT in the C–V test was higher than in the I–V test because of the induced charges by dielectric layer. In addition, the ideality factor (n) and series resistance (Rs) determined by Cheung’s and Norde’s methods, other parameters for MOS diodes were also calculated by C–V measurement at different frequencies.
Định danh: https://dspace.ctu.edu.vn/jspui/handle/123456789/39481
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