1Knobloch J,Glunz S W, Biro D, et al. Solar cells with efficiencies above 21% processed from Czochralski grown silicon [ C ]//IEEE Photovoltaic Specialist Conf., 1996:405-408.
2Zhao J, Wang A, Green M A. Performance degradation in Cz(B) cells and improved stability high efficiency PERT and PERL silicon cells on a variety of SEH MCZ(B), Fz(B) and Cz(Ga) SubstratesEJ]. Progress in Photovoltaics, 2000, 8(5):549-558.
3SchmidtJ, Aberle A G, Hezel R. Investigation of carrier lifetime instabilities in Cz-grown silicon[C]// 26th IEEE Photovoltaic Specialist Conf. , 1997:13-18.
4Schmidt J, Hezel R. Light-induced degradation in Cz silicon solar cells: fundamental understanding and strategies for its avoidance[C]//12th Workshop on Crystalline Silicon Solar Cell Materials and Processes, 2002:321-325.
5Mulligan W P, Rose D H, Cudzinovic M J, et al. Manufacture of solar cells with 21% efficiency[C]// 19th European Photovoltaic Solar Energy Conf., 2004:387-390.
6Cousins P J,Smith D D, Luan H C, et al. Gen Ill: improved performance at lower cost[C]//35th IEEE Photovoltaic Specialist Conf. , 2010:823-826.
7Zhao J,Wang A. High efficiency rear emitter PERT cells on Cz and Fz n-type silicon substrates[C]//IEEE 4th World Conf. on Photovoltaic Energy Conversion, 2006:996-999.
8KinoshitaT, Fujishima D, Yano A, et al. Theapproaches for high efficiency HIT solar cell with very thin (% 100 ram) silicon wafer over 230/00[C]//26th European Photovoltaic Solar Energy Conf. , 2011:871- 874.
9TsunomuraY, Yoshimine Y, Taguchi M, et al. Twenty-two percent efficiency HIT solar cell[J]. Solar Energy Materials and Solar Cells, 2009, 93 (6) : 670- 673.
10Sakata H, Tsunomura Y, Inoue H, et al. High- efficiency HIT solar cell on thin (:100 :m) silicon wafer[C]//24th European Photovoltaic Solar Energy Conf. , 2009:1690-1693.