Fiber optic solar nanogenerator cells
A solar cell employs an optical fiber and semiconductor nanowires grown around the fiber. A p-n junction based design, organic-inorganic heterojunction, or a dye-sensitized structure is built at the surfaces of the nanowires. Light entering the fiber from a tip propagates through the fiber until it enters a nanowire where it reaches a photovoltaic element. Light entering the fiber cannot escape until it interacts with a photovoltaic element, thereby increasing the solar conversion efficiency. The fiber can transmit light, while the nanowires around the fibers increase the surface area of light exposure.
1. A solar collector cell, comprising:
a. an optically transparent elongated prism including a plurality of flat faces that includes a material that causes light entering therein to be reflected internally;
b. a plurality of elongated nanostructures extending outwardly from at least one of the plurality of flat faces;
c. an optically sensitive dye adsorbed onto the plurality of elongated nanostructures, the optically sensitive dye configured to absorb photons from light received through the optically transparent elongated prism; and
d. an electrode, coupled to the plurality of elongated nanostructures, that is configured to transport electrons generated by the optically sensitive dye as a result of light being absorbed therein.
2. The solar collector cell of claim 1 , wherein the elongated nanostructures comprise a piezoelectric material.
3. The solar collector cell of claim 2 , wherein the piezoelectric material comprises zinc oxide.
4. The solar collector cell of claim 2 , further comprising a conductive electrode disposed adjacent to the elongated nanostructures, the conductive electrode including a material that forms a band gap between the elongated nanostructures and the conductive electrode.