Energy storage technology with extreme high energy density capability
A capacitor includes a first electrode having a substrate and a plurality of nanostructures physically and electrically coupled to the substrate. The capacitor also includes a solid, non-conductive interlayer deposited over the nanostructures to coat the nanostructures, and extending between the nanostructures, and a second electrode deposited over the interlayer and extending between the nanostructures. The interlayer insulates the first and second electrode layers from one another.
1. A capacitor comprising:
a first electrode comprising a substrate and a plurality of nanostructures in physical contact with the substrate, the nanostructures increasing the conductive surface area of the first electrode, each of the plurality of nanostructures having a corresponding lengthwise axis, wherein each of at least a subset of the nanostructures is in physical contact with at least one other of the plurality of nanostructures, such that the lengthwise axes of the nanostructures in physical contact are nonparallel;
a solid, non-conductive interlayer deposited over the nanostructures to coat the nanostructures, and extending between the nanostructures; and
a second electrode deposited over the interlayer and extending between the nanostructures.
2. A capacitor according to claim 1 , further comprising a conductive first separator layer deposited between the first electrode and the interlayer.
3. A capacitor according to claim 2 , wherein the nanostructures are non-conductive.
4. A capacitor according to claim 1 , wherein the nanostructures comprise magnetic nanostructures.
5. A capacitor according to claim 1 , further comprising a second separator layer deposited between the interlayer and the second electrode.
6. A capacitor according to claim 1 , wherein the height of the nanostructures exceeds the diameter of the nanostructures by a factor of 100 or greater.
7. A capacitor according to claim 1 , wherein the height of the nanostructures exceeds the diameter of the nanostructures by a factor of 1000 or greater.
8. A capacitor according to claim 1 , wherein the nanostructures comprise a material different from the substrate material.
9. A capacitor according to claim 1 , wherein the nanostructures are formed and then deposited on the substrate.
10. A capacitor according to claim 1 , wherein the capacitor has a charge density of 1 Coulomb per cm 2 of substrate.
11. A capacitor formed from a plurality of nanostructures, wherein each of at least a subset of the nanostructures is in physical contact with at least one other of the plurality of nanostructures such that lengthwise axes of the nanostructures in contact with one another are nonparallel, the capacitor having a plurality of layers arranged such that a cross-section taken perpendicular to a lengthwise axis of one nanostructure, from an outer circumferential surface of the nanostructure, through the nanostructure, to an outer circumferential surface of an adjacent nanostructure, comprises:
a first electrode layer comprising the nanostructure;
a solid, non-conductive interlayer; and
a second electrode layer.