All silicon electrode photocapacitor for integrated energy storage and conversion

Nano Lett. 2015 Apr 8;15(4):2727-31. doi: 10.1021/acs.nanolett.5b00563. Epub 2015 Mar 30.

Abstract

We demonstrate a simple wafer-scale process by which an individual silicon wafer can be processed into a multifunctional platform where one side is adapted to replace platinum and enable triiodide reduction in a dye-sensitized solar cell and the other side provides on-board charge storage as an electrochemical supercapacitor. This builds upon electrochemical fabrication of dual-sided porous silicon and subsequent carbon surface passivation for silicon electrochemical stability. The utilization of this silicon multifunctional platform as a combined energy storage and conversion system yields a total device efficiency of 2.1%, where the high frequency discharge capability of the integrated supercapacitor gives promise for dynamic load-leveling operations to overcome current and voltage fluctuations during solar energy harvesting.

Keywords: Solar supercapacitor; dye-sensitized solar cell; energy storage; photocapacitor; polymer electrolytes; porous silicon; supercapacitor.

Publication types

  • Research Support, U.S. Gov't, Non-P.H.S.