Supercapacitor
The present disclosure is an electrical power generating and storage unit configured to generate electricity using magnetic forces and gravitational forces. The power generator can be scaled for various applications, including mobile and stationary power production. One example of the power generator includes nano-coated coils placed along the walls of a cylindrical housing around a centrally placed sphere containing a gel compound. The gel compound is produced by an electrochemical reaction between metals and a salt contained in a supersolution.
1 . A supercapacitor, comprising:
a core;
a separator comprising paper, aluminum, and a gel compound rolled about the core; and
a coil wound about the separator;
wherein the gel compound rolled about the core comprises an electrochemical reaction between a metallic substance and a salt contained in a solution; and
wherein the gel compound rolled about the core comprises an electrochemical reaction between a supersolution containing a first plate electrically connected to a second plate, and wherein the supersolution comprises one of:
16-18% NaCl by volume and 82-84% deionized water by volume, and
about 14-18% MgSO 4 by volume and 82-86% deionized water by volume.
2 . The supercapacitor of claim 1 , wherein the core comprises commercially pure copper.
3 . The supercapacitor of claim 1 , wherein the coil wound about the separator comprises commercially pure copper.
4 . The supercapacitor of claim 3 , wherein the core comprises a nano-coating; and wherein the nano-coating comprising an oxide layer applied by a heat source in atmospheric conditions.
5 . The supercapacitor of claim 4 , wherein the coil wound about the separator comprises a commercially pure copper and a nano-coating; and wherein the nano-coating comprising an oxide layer applied by a heat source in atmospheric conditions.
6 . The supercapacitor of claim 1 , wherein the first plate comprises copper and a nano-coating; and wherein the nano-coating comprising an oxide layer applied by a heat source in atmospheric conditions.
7 . The supercapacitor of claim 1 , wherein the second plate comprises zinc and a nano-coating; wherein the electrical connection between the first and second plates comprises a nano-coated wire; and wherein the nano-coating comprising an oxide layer applied by a heat source in atmospheric conditions.
8 . The supercapacitor of claim 1 , further comprising titanate.