Epitaxy strontium lead titanate film with LiNiO2 cushioning layer
A technology of strontium lead titanate and buffer layer, which is applied in the field of epitaxial strontium lead titanate film and its preparation, can solve the problems that PST film cannot be used, and achieve the effects of excellent epitaxial characteristics, reduced dielectric loss, and good market prospects
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Embodiment 1
[0031] Using lithium carbonate and nickel oxide as raw materials, mix 15% lithium carbonate and 85% nickel oxide according to the mass percentage, grind for 4 hours, press at a pressure of 5MPa, and sinter in air at a sintering temperature of 850 ℃, the heating rate is controlled at 300℃ / h, the holding time is controlled at 2h, and the lithium nickelate target is obtained after falling to normal temperature; lead carbonate, strontium carbonate and titanium oxide are used as raw materials, and the carbonic acid with a mass percentage of 25% Lead, 20% strontium carbonate and 55% titanium oxide are mixed, ground for 4 hours, pressed at a pressure of 6MPa, and sintered in air at a sintering temperature of 880°C, with a heating rate of 400°C / h and a holding time of After 2.5 hours, the lead strontium titanate target was obtained after cooling down to room temperature; using the prepared lithium nickelate target, the lithium nickelate film was deposited on the (001) MgO substrate by ...
Embodiment 2
[0033]Using lithium carbonate and nickel oxide as raw materials, mix 10% lithium carbonate and 90% nickel oxide according to the mass percentage, grind for 3 hours, press at a pressure of 2MPa, and sinter in air at a sintering temperature of 800 ℃, the heating rate is controlled at 100℃ / h, the holding time is controlled at 1h, and the lithium nickelate target is obtained after falling to normal temperature; lead carbonate, strontium carbonate and titanium oxide are used as raw materials, and the carbonic acid with a mass percentage of 30% Lead, 25% strontium carbonate and 45% titanium oxide are mixed, ground for 5 hours, pressed at 10 MPa, and sintered in air. After 3 hours, the lead strontium titanate target was obtained after cooling down to normal temperature; using the prepared lithium nickelate target, a lithium nickelate film was deposited on the (001) MgO substrate by using the pulsed laser deposition method, and the substrate temperature was 600°C; Using the prepared s...
Embodiment 3
[0035] Using lithium carbonate and nickel oxide as raw materials, mix 20% lithium carbonate and 80% nickel oxide according to the mass percentage, grind for 5 hours, press at a pressure of 10MPa, and sinter in air at a sintering temperature of 900 ℃, the heating rate is controlled at 600℃ / h, the holding time is controlled at 3h, and the lithium nickelate target is obtained after falling to normal temperature; lead carbonate, strontium carbonate and titanium oxide are used as raw materials, and 20% carbonic acid by mass percentage Lead, 25% strontium carbonate and 55% titanium oxide are mixed, ground for 3 hours, pressed at a pressure of 2MPa, and sintered in air at a sintering temperature of 800°C, a heating rate of 100°C / h, and a holding time of After 1-3 hours, the lead strontium titanate target is obtained after cooling down to normal temperature; the lithium nickelate thin film is deposited on the (001) MgO substrate by using the prepared lithium nickelate target, and the s...
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