Title :
Spray pyrolysis coating Al2O3:Cl/TiO2 bilayer for PERC
Author :
Hsing-Hua Wu ; Kuei-Bo Chen ; Huang, Walt K. W. ; Nai-Tien Ou ; Chung-Han Wu ; Sheng-Min Yu ; Wan-Ying Chou ; Sung-Yen Wei ; Tai-Jui Wang ; Wen-Ching Sun
Author_Institution :
Gintech Energy Corp., Miaoli, Taiwan
Abstract :
In this study we use low-cost spray pyrolysis method to produce a Al2O3:Cl/TiO2 bilayer as rear passivation layer to replace the common known Al2O3/SiNx laminate in PERC structure silicon solar cells. The TiO2 and TiO2/Al2O3 mixed thin film acts a competent barrier from molten aluminum paste during the co-firing process and high refractive index of those thin films demonstrated excellent internal back reflectance (IBR). Very high negative fixed charge concentration is up to 5 × 1012 cm-2 in TiO2 thin film being observed and the interface trap density (Dit) can be controlled via Ti/Al ratio and ultra-thin Al2O3:Cl interfacial layer to maintain good passivation ability and the lowest result of Dit is 8 × 1010 cm-2eV-1 with a 6nm Al2O3:Cl interfacial layer. Through the use of Al2O3:Cl interfacial layer, the carrier lifetime of bulk wafer increase from 60μs to 120μs. All of the results show that this concept is very promising for high efficiency silicon solar cell application.
Keywords :
aluminium compounds; firing (materials); laminates; passivation; pyrolysis; refractive index; semiconductor thin films; solar cells; sprays; titanium compounds; Al2O3:Cl-TiO2; PERC; PERC structure silicon solar cells; bulk wafer; co-firing process; interface trap density; interfacial layer; internal back reflectance; molten aluminum paste; passivation; rear passivation layer; refractive index; silicon solar cell; thin film; Aluminum; Capacitance-voltage characteristics; Films; Passivation; Photovoltaic cells; Silicon; PERC; passivation; spray pyrolysis;
Conference_Titel :
Photovoltaic Specialist Conference (PVSC), 2014 IEEE 40th
Conference_Location :
Denver, CO
DOI :
10.1109/PVSC.2014.6925145