Thickness Study of Er-Doped Magnesium Zinc Oxide Diode by Spray Pyrolysis

Erbium-doped magnesium zinc oxides were prepared through spray pyrolysis deposition at 450 °C with an aqueous solution containing magnesium nitrate, zinc acetate, erbium acetate, and indium nitrate precursors. Diodes with different erbium-doped magnesium zinc oxide thicknesses were fabricat...

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Main Authors: Yu-Ting Hsu, Che-Chi Lee, Wen-How Lan, Kai-Feng Huang, Kuo-Jen Chang, Jia-Ching Lin, Shao-Yi Lee, Wen-Jen Lin, Mu-Chun Wang, Chien-Jung Huang
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:Crystals
Subjects:
Online Access:https://www.mdpi.com/2073-4352/8/12/454
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spelling doaj-d5e6270b2a714c6c8d67f11a283c479e2020-11-25T00:58:50ZengMDPI AGCrystals2073-43522018-12-0181245410.3390/cryst8120454cryst8120454Thickness Study of Er-Doped Magnesium Zinc Oxide Diode by Spray PyrolysisYu-Ting Hsu0Che-Chi Lee1Wen-How Lan2Kai-Feng Huang3Kuo-Jen Chang4Jia-Ching Lin5Shao-Yi Lee6Wen-Jen Lin7Mu-Chun Wang8Chien-Jung Huang9Department of Electrophysics, National Chiao Tung University, Hsinchu 30010, TaiwanDepartment of Electrical Engineering, National University of Kaohsiung, Kaohsiung 81148, TaiwanDepartment of Electrical Engineering, National University of Kaohsiung, Kaohsiung 81148, TaiwanDepartment of Electrophysics, National Chiao Tung University, Hsinchu 30010, TaiwanNational Chung-Shan Institute of Science & Technology, Taoyuan 32599, TaiwanNational Chung-Shan Institute of Science & Technology, Taoyuan 32599, TaiwanNational Chung-Shan Institute of Science & Technology, Taoyuan 32599, TaiwanNational Chung-Shan Institute of Science & Technology, Taoyuan 32599, TaiwanDepartment of Electronic Engineering, Minghsin University of Science and Technology, Hsinchu 30401, TaiwanDepartment of Applied Physics, National University of Kaohsiung, Kaohsiung 81148, TaiwanErbium-doped magnesium zinc oxides were prepared through spray pyrolysis deposition at 450 °C with an aqueous solution containing magnesium nitrate, zinc acetate, erbium acetate, and indium nitrate precursors. Diodes with different erbium-doped magnesium zinc oxide thicknesses were fabricated. The effect of erbium-doped magnesium zinc oxide was investigated. The crystalline structure and surface morphology were analyzed using X-ray diffraction and scanning electron microscopy. The films exhibited a zinc oxide structure, with (002), (101), and (102) planes and tiny rods in a mixed hexagonal flakes surface morphology. With the photoluminescence analyses, defect states were identified. The diodes were fabricated via a metallization process in which the top contact was Au and the bottom contact was In. The current⁻voltage characteristics of these diodes were characterized. The structure resistance increased with the increase in erbium-doped magnesium zinc oxide thickness. With a reverse bias in excess of 8 V, the light spectrum, with two distinct green light emissions at wavelengths of 532 nm and 553 nm, was observed. The light intensity that resulted when using a different operation current of the diodes was investigated. The diode with an erbium-doped magnesium zinc oxide thickness of 230 nm shows high light intensity with an operational current of 80 mA. The emission spectrum with different injection currents for the diodes was characterized and the mechanism is discussed.https://www.mdpi.com/2073-4352/8/12/454thicknessmagnesium zinc oxideerbiumdiode
collection DOAJ
language English
format Article
sources DOAJ
author Yu-Ting Hsu
Che-Chi Lee
Wen-How Lan
Kai-Feng Huang
Kuo-Jen Chang
Jia-Ching Lin
Shao-Yi Lee
Wen-Jen Lin
Mu-Chun Wang
Chien-Jung Huang
spellingShingle Yu-Ting Hsu
Che-Chi Lee
Wen-How Lan
Kai-Feng Huang
Kuo-Jen Chang
Jia-Ching Lin
Shao-Yi Lee
Wen-Jen Lin
Mu-Chun Wang
Chien-Jung Huang
Thickness Study of Er-Doped Magnesium Zinc Oxide Diode by Spray Pyrolysis
Crystals
thickness
magnesium zinc oxide
erbium
diode
author_facet Yu-Ting Hsu
Che-Chi Lee
Wen-How Lan
Kai-Feng Huang
Kuo-Jen Chang
Jia-Ching Lin
Shao-Yi Lee
Wen-Jen Lin
Mu-Chun Wang
Chien-Jung Huang
author_sort Yu-Ting Hsu
title Thickness Study of Er-Doped Magnesium Zinc Oxide Diode by Spray Pyrolysis
title_short Thickness Study of Er-Doped Magnesium Zinc Oxide Diode by Spray Pyrolysis
title_full Thickness Study of Er-Doped Magnesium Zinc Oxide Diode by Spray Pyrolysis
title_fullStr Thickness Study of Er-Doped Magnesium Zinc Oxide Diode by Spray Pyrolysis
title_full_unstemmed Thickness Study of Er-Doped Magnesium Zinc Oxide Diode by Spray Pyrolysis
title_sort thickness study of er-doped magnesium zinc oxide diode by spray pyrolysis
publisher MDPI AG
series Crystals
issn 2073-4352
publishDate 2018-12-01
description Erbium-doped magnesium zinc oxides were prepared through spray pyrolysis deposition at 450 °C with an aqueous solution containing magnesium nitrate, zinc acetate, erbium acetate, and indium nitrate precursors. Diodes with different erbium-doped magnesium zinc oxide thicknesses were fabricated. The effect of erbium-doped magnesium zinc oxide was investigated. The crystalline structure and surface morphology were analyzed using X-ray diffraction and scanning electron microscopy. The films exhibited a zinc oxide structure, with (002), (101), and (102) planes and tiny rods in a mixed hexagonal flakes surface morphology. With the photoluminescence analyses, defect states were identified. The diodes were fabricated via a metallization process in which the top contact was Au and the bottom contact was In. The current⁻voltage characteristics of these diodes were characterized. The structure resistance increased with the increase in erbium-doped magnesium zinc oxide thickness. With a reverse bias in excess of 8 V, the light spectrum, with two distinct green light emissions at wavelengths of 532 nm and 553 nm, was observed. The light intensity that resulted when using a different operation current of the diodes was investigated. The diode with an erbium-doped magnesium zinc oxide thickness of 230 nm shows high light intensity with an operational current of 80 mA. The emission spectrum with different injection currents for the diodes was characterized and the mechanism is discussed.
topic thickness
magnesium zinc oxide
erbium
diode
url https://www.mdpi.com/2073-4352/8/12/454
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