Title :
Non-metallic, manufacturable arrays for high performance single junction thin film nc-Si solar cells
Author :
Nam, Wook Jun ; Fonash, Stephen J. ; Ji, Liming ; Varadan, Vasundara V.
Author_Institution :
Solarity LLC, State College, PA, USA
Abstract :
Studies of the use of metallic gratings and of metallic nano-element arrays for light trapping in thin film solar cells, undertaken by a number of research groups, have generated considerable interest. Recently we have shown that at least comparable performance enhancement is attainable with readily imprintable, non-metallic nano-element arrays. Here we apply this non-metallic nano-element array concept to single junction nano-crystalline silicon (nc-Si) solar cells and demonstrate that a nominally 800nm nc-Si absorber can yield a short circuit current density (Jsc) of 29.2mA/cm2. This is an increase of 55% over the short circuit current density of the corresponding planar control nc-Si cell. These Jsc results point to a design optimization path that can lead to very manufacturable thin film single junction nc-Si cells with conversion efficiencies greater than 15%.
Keywords :
current density; elemental semiconductors; optimisation; semiconductor thin films; short-circuit currents; silicon; solar cell arrays; Si; high performance single junction; light trapping; manufacturable arrays; metallic gratings; nonmetallic arrays; nonmetallic nanoelement arrays; optimization; planar control nc-Si cell; short circuit current density; thin film nc-Si solar cells; Charge carrier processes; Computer architecture; Junctions; Microprocessors; Photovoltaic cells; Silicon; Substrates; carrier collection; light trapping; nano-structure; photonic; plasmonic; solar cells;
Conference_Titel :
Photovoltaic Specialists Conference (PVSC), 2012 38th IEEE
Conference_Location :
Austin, TX
Print_ISBN :
978-1-4673-0064-3
DOI :
10.1109/PVSC.2012.6317634