Search Results - "Garralaga Rojas, E."

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  1. 1

    Sintering and reorganization of electrochemically etched mesoporous germanium layers in various atmospheres by Garralaga Rojas, E., Hensen, J., Baur, C., Brendel, R.

    “…We investigate sintering and reorganization of electrochemically etched mesoporous Ge layers. Sintering in nitrogen, forming gas, or argon atmospheres always…”
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    Journal Article Conference Proceeding
  2. 2

    Formation of mesoporous germanium double layers by electrochemical etching for layer transfer processes by Garralaga Rojas, E., Terheiden, B., Plagwitz, H., Hensen, J., Baur, C., Strobl, G.F.X., Brendel, R.

    Published in Electrochemistry communications (01-02-2010)
    “…We produce uniform mesoporous single- and multilayers on 4 in. p-type Ge wafers by means of electrochemical etching in highly concentrated HF-based…”
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    Journal Article
  3. 3

    Lift-off of mesoporous layers by electrochemical etching on Si (100) substrates with miscut of 6° off towards (111) by Garralaga Rojas, E., Terheiden, B., Plagwitz, H., Hensen, J., Wiedemeier, V., Berth, G., Zrenner, A., Brendel, R.

    Published in Thin solid films (31-10-2011)
    “…Uniform mesoporous Si double layers are formed on 4 inch p-type < 100> wafers with an off orientation of 6º towards < 111> by means of electrochemical etching…”
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    Journal Article
  4. 4

    Lift-off of mesoporous layers by electrochemical etching on Si (100) substrates with miscut of 6 degree off towards (111) by Garralaga Rojas, E, Terheiden, B, Plagwitz, H, Hensen, J, Wiedemeier, V, Berth, G, Zrenner, A, Brendel, R

    Published in Thin solid films (31-10-2011)
    “…Uniform mesoporous Si double layers are formed on 4 inch p-type wafers with an off orientation of 6 super(o) towards by means of electrochemical etching in…”
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    Journal Article
  5. 5

    Loss analysis of back-contact back-junction thin-film monocrystalline silicon solar cells by Haase, F., Eidelloth, S., Horbelt, R., Bothe, K., Rojas, E. G., Brendel, R.

    “…We investigate the power losses in back-contact back-junction monocrystalline thin-film silicon solar cells. The cells are made from epitaxial layers grown on…”
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    Conference Proceeding