Journal of Synthetic Crystals, Volume. 54, Issue 5, 819(2025)
Preparation of LiNbO3/ITO Heterojunction Thin Films and Its Optoelectronic Properties
[1] LI W C, CUI J, ZHENG D H et al. Fabrication and characteristics of heavily Fe-doped LiNbO3/Si heterojunction. Materials, 12, 2659(2019).
[2] WANG X C, LIANG Y, TIAN S F et al. Oxygen pressure dependent growth of pulsed laser deposited LiNbO3 films on diamond for surface acoustic wave device application. Journal of Crystal Growth, 375, 73-77(2013).
[3] ALMIRALL A, OLIVERI S, DANIAU W et al. High-frequency surface acoustic wave devices based on epitaxial Z-LiNbO3 layers on sapphire. Applied Physics Letters, 114, 162905(2019).
[4] LI X Z, HU R C, WU Z H et al. S0-like SAW mode resonator on LiNbO3/SiO2/SiC structure. Japanese Journal of Applied Physics, 63(2024).
[5] TIWARY A, ROUT S S, BEHERA B. Design and analysis of various characteristics of a MEMS-based PIB/CNT/LiNbO3 multilayered SAW sensor for CO2 gas detection. Transactions on Electrical and Electronic Materials, 23, 609-617(2022).
[6] WANG C, WANG Y C, HUO D W et al. Subwavelength coupling and ultra-high exponential gain coefficient originating from 2D electron gas at ITO/LiNbO3 interface. Journal of Applied Physics, 125(2019).
[7] LUCCHETTI L, KUSHNIR K, RESHETNYAK V et al. Light-induced electric field generated by photovoltaic substrates investigated through liquid crystal reorientation. Optical Materials, 73, 64-69(2017).
[8] WANG Y C. Hybrid plasmon of two-dimensional electron gas in lithium niobate/indium tin oxide heterojunction(2020).
[9] MCPOLIN C P, OLIVIER N, BOUILLARD J S et al. Universal switching of plasmonic signals using optical resonator modes. Light, Science & Applications, 6(2017).
[10] JIN L, SONG S C, WEN L et al. Theoretical investigation of surface plasmonic polariton-based electro-optical modulator with low polarization dependence. Opto-Electronic Engineering, 45, 180156(2018).
[11] SASANI GHAMSARI M. Development of thin film fabrication using magnetron sputtering. Metals, 13, 963(2023).
[12] OGUGUA S N, NTWAEABORWA O M, SWART H C. Latest development on pulsed laser deposited thin films for advanced luminescence applications. Coatings, 10, 1078(2020).
[13] LAN F F, ZHOU R, QIAN Z Y et al. Chemical vapor deposition of ferrimagnetic Fe3O4 thin films. Crystals, 12, 485(2022).
[14] NISTICÒ R, SCALARONE D, MAGNACCA G. Sol-gel chemistry, templating and spin-coating deposition: a combined approach to control in a simple way the porosity of inorganic thin films/coatings. Microporous and Mesoporous Materials, 248, 18-29(2017).
[15] JARIWALA S, SUN H Y, ADHYAKSA G W P et al. Local crystal misorientation influences non-radiative recombination in halide perovskites. Joule, 3, 3048-3060(2019).
[16] PARAJULI P, MENDOZA-CRUZ R, SANTIAGO U et al. The evolution of growth, crystal orientation, and grain boundaries disorientation distribution in gold thin films. Crystal Research and Technology, 53, 1800038(2018).
[17] WANG X C, YE Z Z, LI G M et al. Influence of substrate temperature on the growth and optical waveguide properties of oriented LiNbO3 thin films. Journal of Crystal Growth, 306, 62-67(2007).
[18] ZHANG Q F, HOU S M, SHAO Q Y et al. Study of enhanced photoabsorption of BaO thin films in the near-ultraviolet band with applied vertical electric field on the surface. Acta Physica Sinica, 49, 2089-2093(2000).
[19] DE VLEESCHOUWER H, BOUGRIOUA F, PAUWELS H. Importance of ion transport in industrial LCD applications. Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals, 360, 29-39(2001).
[20] WEI J T, CHEN L W. Calculation model for carrier mobility and semiconductor resistivity. Journal of Neijiang Normal University, 31, 43-47(2016).
[21] WU L S. Study on electrical conductivity of lithium niobate. Journal of Southwest China Normal University (Natural Science Edition), 33, 24-27(2011).
[22] SUMETS M, BELONOGOV E, IEVLEV V et al. Synthesis and properties of NiSi2-LiNbO3 heterostructures fabricated by radio-frequency magnetron sputtering. Surfaces and Interfaces, 21, 100797(2020).
[23] FANG G J, LI D J, YAO B L. Magnetron sputtered AZO thin films on commercial ITO glass for application of a very low resistance transparent electrode. Journal of Physics D: Applied Physics, 35, 3096-3100(2002).
[24] ZHANG Z G. Energy band structure and conducting characteristics of ITO films. Chinese Journal of Semiconductors, 27, 840-845(2006).
[25] WANG M X, YUE G H, FAN X Y et al. Investigations on preparation and the Hall effect of the Cu3N thin films. Journal of Synthetic Crystals, 35, 1108-1112(2006).
Get Citation
Copy Citation Text
Jiayi ZHU, Shuai DU, Pengfei ZHOU, Fan ZHENG, Yunlin CHEN. Preparation of LiNbO3/ITO Heterojunction Thin Films and Its Optoelectronic Properties[J]. Journal of Synthetic Crystals, 2025, 54(5): 819
Category:
Received: Oct. 25, 2024
Accepted: --
Published Online: Jul. 2, 2025
The Author Email: Yunlin CHEN (ylchen@bjtu.edu.cn)