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Updated: Jun 27, 2025

Growth and Electrostatic/chemical Properties of Metal/LaAlO3/SrTiO3 Heterostructures
Published on: February 8, 2018
Density functional theory study on the formation mechanism and electrical properties of two-dimensional electron gas
Yuling Li1, Yuxi Huang1, Xiaohua Liu1
1Key Laboratory of Fluid and Power Machinery, School of Material Science and Engineering, Xihua University, Chengdu, 610039, People's Republic of China.
Abstract:
The two-dimensional electron gas (2DEG) in BaSnO -based heterostructure (HS) has received tremendous attention in the electronic applications because of its excellent electron migration characteristic. We modeled the n-type (LaO) /(SnO ) interface by depositing LaGaO film on the BaSnO substrate and explored strain effects on the critical thickness for forming 2DEG and electrical properties of LaGaO /BaSnO HS system using first-principles electronic structure calculations. The results indicate that to form 2DEG in the unstrained LaGaO /BaSnO HS system, a minimum thickness of approximately 4 unit cells of LaGaO film is necessary. An increased film thickness of LaGaO is required to form the 2DEG for -3%-biaxially-strained HS system and the critical thickness is 3 unit cells for 3%-baxially-strained HS system, which is caused by the strain-induced change of the electrostatic potential in LaGaO film. In addition, the biaxial strain plays an important role in tailoring the electrical properties of 2DEG in LaGaO /BaSnO HS syestem. The interfacial charge carrier density, electron mobility and electrical conductivity can be optimized when a moderate tensile strain is applied on the BaSnO substrate in the ab-plane.
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