Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and conductive window layers for thin film solar cells

F Finger, O Astakhov, T Bronger, R Carius, T Chen… - Thin Solid Films, 2009 - Elsevier
Crystalline silicon carbide alloys have a very high potential as transparent conductive
window layers in thin-film solar cells provided they can be prepared in thin-film form and at …

[引用][C] Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and conductive window layers for thin film solar cells

F FINGER, O ASTAKHOV, M LUYSBERG… - Thin solid …, 2009 - pascal-francis.inist.fr
Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and
conductive window layers for thin film solar cells CNRS Inist Pascal-Francis CNRS Pascal …

[引用][C] Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and conductive window layers for thin film solar cells

F Finger, O Astakhov, T Bronger, R Carius, T Chen… - Thin Solid Films, 2009 - cir.nii.ac.jp
Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and
conductive window layers for thin film solar cells | CiNii Research CiNii 国立情報学研究所 学術 …

[引用][C] Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and conductive window layers for thin film solar cells

F Finger, O Astakhov, T Bronger, R Carius… - Thin Solid …, 2009 - ui.adsabs.harvard.edu
Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and
conductive window layers for thin film solar cells - NASA/ADS Now on home page ads icon ads …

Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and conductive window layers for thin film solar cells

F Finger, O Astakhov, T Bronger, R Carius, T Chen… - Thin Solid Films, 2009 - osti.gov
Crystalline silicon carbide alloys have a very high potential as transparent conductive
window layers in thin-film solar cells provided they can be prepared in thin-film form and at …

Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and conductive window layers for thin film solar cells

F Finger, T Chen, A Gordijn, Y Huang… - Thin solid …, 2009 - juser.fz-juelich.de
Crystalline silicon carbide alloys have a very high potential as transparent conductive
window layers in thin-film solar cells provided they can be prepared in thin-film form and at …

Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and conductive window layers for thin film solar cells

F Finger, O Astakhov, T Bronger, R Carius, T Chen… - Thin Solid Films, 2009 - infona.pl
Crystalline silicon carbide alloys have a very high potential as transparent conductive
window layers in thin-film solar cells provided they can be prepared in thin-film form and at …

[PDF][PDF] Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and conductive window layers for thin film solar cells

F Finger, O Astakhov, T Bronger, R Carius, T Chen… - Thin Solid …, 2009 - academia.edu
F. Finger a,⁎, O. Astakhov a, T. Bronger a, R. Carius a, T. Chen a, 1, A. Dasgupta a, 2, A.
Gordijn a, L. Houben b, Y. Huang a, S. Klein a, 3, M. Luysberg b, H. Wang a, 4, L. Xiao aa …

Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and conductive window layers for thin film solar cells

F Finger, O Astakhov, T Bronger… - Thin Solid …, 2009 - weizmann.elsevierpure.com
Crystalline silicon carbide alloys have a very high potential as transparent conductive
window layers in thin-film solar cells provided they can be prepared in thin-film form and at …

Microcrystalline silicon carbide alloys prepared with HWCVD as highly transparent and conductive window layers for thin film solar cells

F Finger, O Astakhov, T Bronger, R Carius, T Chen… - Thin Solid …, 2009 - inis.iaea.org
[en] Crystalline silicon carbide alloys have a very high potential as transparent conductive
window layers in thin-film solar cells provided they can be prepared in thin-film form and at …