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Origin of enhanced piezoelectric constants of MgNbAlN studied by first-principles calculations
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Citations
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References
2017
Year
Materials ScienceMaterials EngineeringFirst-principles CalculationsWurtzite AlnEnhanced Piezoelectric ConstantsEngineeringApplied PhysicsMagnesium-based CompositePiezoelectric MaterialsPiezoelectric PropertiesPiezoelectric MaterialRemarkable SofteningPiezoelectricity
We theoretically investigate the piezoelectric properties of Mg–Nb codoped wurtzite AlN by first-principles calculations and find the following two points. First, doping induces a remarkable softening of elastic constants, especially the diagonal component along the c-axis. This results in the increased piezoelectric strain constant d33, which is about 4.3 times larger than that of wurtzite AlN. Second, the c-axis lattice length increases up to the dopant concentration of around 60 at. %, and then decreases. These features are in excellent agreement with the experimental results previously reported.
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