Double Layers of Ultrathin a-Si:H and SiNx for Surface Passivation of n-type Crystalline Si Wafers

Author:

Cheng Xuemei,Marstein Erik Stensrud,Haug Halvard,Di Sabatino Marisa

Publisher

Elsevier BV

Reference15 articles.

1. Green MA, Emery K, Hishikawa Y, Warta W, Dunlop ED. Solar cell efficiency tables (Version 47). Progress in photovoltaics: research and applications. (2016); 24: 3-11.

2. Panasonic, Panasonic HIT. “Solar Cell Achieves World's Highest Energy Conversion Efficiency of 25.6% at Research Level.” Press release (2014).

3. Thermal stability of hydrogenated amorphous silicon passivation for p-type crystalline silicon;Cheng;physica status solidi (a).,2016

4. Cheng LC, Kao MC, Huang HH, Huang PS, Cheng LW. 21% p-type industrial PERC cells with homogeneous emitter profile and thermally grown oxidation layer. InPhotovoltaic Specialist Conference (PVSC), 2015 IEEE 42nd 2015 Jun 14 (pp. 1-3). IEEE.

5. Surface passivation at low temperature of p-and n-type silicon wafers using a double layer a-Si: H/SiNx: H;Focsa;Materials Science and Engineering: B.,2009

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