Antiferroelectric perovskite gate oxide for transistor applications
An integrated circuit structure comprises a substrate. An antiferroelectric gate oxide is above the substrate, the antiferroelectric gate oxide comprising a perovskite material. A gate electrode is over at least a portion of the gate oxide.
1. An integrated circuit structure, comprising:
a substrate;
an antiferroelectric gate oxide directly on the substrate, the antiferroelectric gate oxide consisting of a perovskite material, wherein the antiferroelectric perovskite material comprises chemically substituted BiFeO 3 , wherein an A-site comprises Bi 1-x Sm x to produce a non-leaky antiferroelectric perovskite gate oxide to control carrier concentrations, and wherein a B-site comprises Fe 1-y Sc y , wherein x and y independently range from approximately 0.25 to 0.95; and
a gate electrode over at least a portion of the gate oxide.
2. The integrated circuit structure of claim 1 , wherein the integrated structure is selected from a group comprising: a transistor, a capacitance stack; and a gate capacitance stack.
3. The integrated circuit structure of claim 1 , wherein the gate electrode comprises a material selected from a group comprising: SrPbO 3 , LaSrMnO 3 , and LaSrCoO 3 .
4. The integrated circuit structure of claim 1 , wherein the antiferroelectric perovskite material comprises ABO 3 type perovskites having sub-lattices that include an A-site and a B-site, wherein the A-site is doped with a rare earth material for first site ferroelectricity.
5. The integrated circuit structure of claim 4 , wherein the B-site is doped with a 3d block transition metal for second site ferroelectricity.
6. The integrated circuit structure of claim 4 , wherein the antiferroelectric perovskite material is a chemically substituted alkaline-earth iron perovskite AFeO 3 .
7. An integrated circuit structure, comprising:
a substrate;
a gate oxide directly on the substrate, the gate oxide consisting of an antiferroelectric perovskite material, wherein the antiferroelectric perovskite material comprises BiFeO 3 , wherein an A-site comprises Bi 1-x Sm x to produce a non-leaky antiferroelectric perovskite gate oxide to control carrier concentrations, and wherein a B-site comprises Fe 1-y Sc y , wherein x and y independently range from approximately 0.25 to 0.95;
a gate electrode over at least a portion of the gate oxide; and
a source region on one side of the gate electrode and a drain region on an opposite side of the gate electrode.
8. The integrated circuit structure of claim 7 , wherein the gate electrode comprises a material selected from a group comprising: SrPbO 3 , LaSrMnO 3 , and LaSrCoO 3 .
9. The integrated circuit structure of claim 7 , wherein the antiferroelectric perovskite material comprises ABO 3 type perovskites having sub-lattices that include an A-site and a B-site, wherein the A-site is doped with a rare earth material for first site ferroelectricity.
10. The integrated circuit structure of claim 9 , wherein the B-site is doped with a 3d block transition metal for second site ferroelectricity.
11. The integrated circuit structure of claim 9 , wherein the antiferroelectric perovskite material is a chemically substituted alkaline-earth iron perovskite AFeO 3 .