High critical oxygen concentration in microcrystalline silicon solar cells

Merdzhanova T, Woerdenweber J, Beyer W, Zastrow U, Stiebig H, Gordijn A (2010)
Physica Status Solidi - Rapid Res. Lett. 4(11): 323-325.

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Merdzhanova T, Woerdenweber J, Beyer W, Zastrow U, Stiebig H, Gordijn A. High critical oxygen concentration in microcrystalline silicon solar cells. Physica Status Solidi - Rapid Res. Lett. 2010;4(11):323-325.
Merdzhanova, T., Woerdenweber, J., Beyer, W., Zastrow, U., Stiebig, H., & Gordijn, A. (2010). High critical oxygen concentration in microcrystalline silicon solar cells. Physica Status Solidi - Rapid Res. Lett., 4(11), 323-325.
Merdzhanova, T., Woerdenweber, J., Beyer, W., Zastrow, U., Stiebig, H., and Gordijn, A. (2010). High critical oxygen concentration in microcrystalline silicon solar cells. Physica Status Solidi - Rapid Res. Lett. 4, 323-325.
Merdzhanova, T., et al., 2010. High critical oxygen concentration in microcrystalline silicon solar cells. Physica Status Solidi - Rapid Res. Lett., 4(11), p 323-325.
T. Merdzhanova, et al., “High critical oxygen concentration in microcrystalline silicon solar cells”, Physica Status Solidi - Rapid Res. Lett., vol. 4, 2010, pp. 323-325.
Merdzhanova, T., Woerdenweber, J., Beyer, W., Zastrow, U., Stiebig, H., Gordijn, A.: High critical oxygen concentration in microcrystalline silicon solar cells. Physica Status Solidi - Rapid Res. Lett. 4, 323-325 (2010).
Merdzhanova, T., Woerdenweber, J., Beyer, W., Zastrow, U., Stiebig, Helmut, and Gordijn, A. “High critical oxygen concentration in microcrystalline silicon solar cells”. Physica Status Solidi - Rapid Res. Lett. 4.11 (2010): 323-325.
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