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Chapter 5
(2011) 527–536 (orthorhombic Mo 17 O 47 )
[12] S. Harel, M. Tomassini, L. Arzel, E. Gautron, N. [26] X. Song, R. Caballero, R. Felix, D. Gerlach, C.
Barreau, Proc. 40 IEEE PVSC (2014) 425-430 Kaufmann, H.-W. Schock, R.Wilks, M. Bär, Jour-
th
[13] International Electrotechnical Commission IEC nal of applied physics 111 (2012) 034903
61646 ed. 2, International Standard, Geneva, [27] J. Assmann, J. Bernede, J. Drici, C. Amory, E. Hal-
Switzerland, 2008 gand, M. Morsli, Surf Sci. 246 (2005) 159-166.
[14] P. Salomé, J. Malaquias, P. Fernandes, A. da [28] C. Wagner, W. Riggs, L. Davis, J. Moulder, Hand-
Cunha, J. Phys. D: Appl. Phys. 43 (2010) 1-7 book of X-ray photoelectron spectroscopy,
[15] E. Gautron, M. Tomassini, L. Arzel, N. Barreau, Sur - Eden Prairie: Perkin-Elmer (1979)
face & Coatings Technology 211 (2012) 29–32 [29] M. Bär, L. Weinhardt, C. Heske, S. Nishiwaki, W.
[16] J. Sandino, E. Romero, J. Oyola, G. Gordillo, H. Shafarman, Physical Review B - Condensed
Lichte, Solar Energy Materials and Solar Cells 95 Matter and Materials Physics, 78 (7) (2008)
(2011) 2006–2009 075404
[17] T. Polcar and M. Evaristo, Surface & Coatings [30] D. Schmid, M. Ruckh, H.W. Schock, Solar Energy
Technology 202 (2008) 2418-2422 Materials and Solar Cells 41/42 (1996) 281-294
[18] M. Camacho-López, L. Escobar-Alarcón, Optical [31] M. Sing, R. Neudert, H. von Lips, M. Golden,
Materials, 33 (2011) 480-484. M. Knupfer, J. Fink, R. Claessen, J. Mücke, H.
[19] L. Seguin, M. Figlarz, Spectrochimica Acta part Schmitt, S. Hüfner B. Lommel, W. Aßmus, C.
A 51 (1994) 1323-1344 Jung, C. Hellwig, Physical review B, 60 (12)
[20] M. Dieterle, G. Mestl, J. Jäger, Y. Uchida, H. Hibst, (1999) 8559-8568
R. Schlögl, Journal of Molecular Catalysis A: [32] M. Bodegard, K. Granath, L. Stolt, A. Rockett,
Chemical 174 (2001) 169–185 Solar Energy Materials and Solar Cells 58 (1999)
[21] A. Bollero, L. Kaupmees, Thin Solid Films 520 199-208
(2012) 4163-4168 [33] D. Brémaud, Investigation and development
[22] R. Sharma, G. Reddy, AIP ADVANCES 3, 092112 of CIGS solar cells on flexible substrates and
(2013) with alternative electrical back contacts, Thesis
[23] A. Chowdhury, D. Cameron, M. Hashmi, Thin Zürich, 2009
Solid Films 332 (1998) 62-68 [34] Collaboration: Authors and editors of the vol-
[24] M. Veres, M. Füle, S. Tóth, M. Koós, I. Pócsik, Di- umes III/17G-41D: O. Madelung, U. Rössler, M.
amond and Related Materials 13 (2004) 1412– Schulz, ´MoO 3 : thermal expansion, density´
1415 Springer Materials - The Landolt-Börnstein Da-
[25] ICDD JCPDS cards 00-042-1120 (cubic mo- tabase (http://www.springermaterials.com).
lybdenum), 00-029-0914 (hexagonal MoSe), [35] V. Saji, C. Lee, Chem Sus Chem 5(7) (2012) 1146-
2
00-032-0671 (monoclinic MoO 2 ) 00-005-0508 1161
(orthorhombic MoO 3 ), 00-047-1081 (monoclin- [36] D. Thomas, E. McCarron, Materials Research Bul-
ic MoO 3 ), 00-047-1320 (monoclinic MoO 3 ), 00- letin 21 (8) (1986) 945–960
012-0753 (anorthic MoO 26 ) and 00-013-0345 [37] K. Eda, K. Chin, N. Sotani, M. Stanley Whitting-
9
172
(2011) 527–536 (orthorhombic Mo 17 O 47 )
[12] S. Harel, M. Tomassini, L. Arzel, E. Gautron, N. [26] X. Song, R. Caballero, R. Felix, D. Gerlach, C.
Barreau, Proc. 40 IEEE PVSC (2014) 425-430 Kaufmann, H.-W. Schock, R.Wilks, M. Bär, Jour-
th
[13] International Electrotechnical Commission IEC nal of applied physics 111 (2012) 034903
61646 ed. 2, International Standard, Geneva, [27] J. Assmann, J. Bernede, J. Drici, C. Amory, E. Hal-
Switzerland, 2008 gand, M. Morsli, Surf Sci. 246 (2005) 159-166.
[14] P. Salomé, J. Malaquias, P. Fernandes, A. da [28] C. Wagner, W. Riggs, L. Davis, J. Moulder, Hand-
Cunha, J. Phys. D: Appl. Phys. 43 (2010) 1-7 book of X-ray photoelectron spectroscopy,
[15] E. Gautron, M. Tomassini, L. Arzel, N. Barreau, Sur - Eden Prairie: Perkin-Elmer (1979)
face & Coatings Technology 211 (2012) 29–32 [29] M. Bär, L. Weinhardt, C. Heske, S. Nishiwaki, W.
[16] J. Sandino, E. Romero, J. Oyola, G. Gordillo, H. Shafarman, Physical Review B - Condensed
Lichte, Solar Energy Materials and Solar Cells 95 Matter and Materials Physics, 78 (7) (2008)
(2011) 2006–2009 075404
[17] T. Polcar and M. Evaristo, Surface & Coatings [30] D. Schmid, M. Ruckh, H.W. Schock, Solar Energy
Technology 202 (2008) 2418-2422 Materials and Solar Cells 41/42 (1996) 281-294
[18] M. Camacho-López, L. Escobar-Alarcón, Optical [31] M. Sing, R. Neudert, H. von Lips, M. Golden,
Materials, 33 (2011) 480-484. M. Knupfer, J. Fink, R. Claessen, J. Mücke, H.
[19] L. Seguin, M. Figlarz, Spectrochimica Acta part Schmitt, S. Hüfner B. Lommel, W. Aßmus, C.
A 51 (1994) 1323-1344 Jung, C. Hellwig, Physical review B, 60 (12)
[20] M. Dieterle, G. Mestl, J. Jäger, Y. Uchida, H. Hibst, (1999) 8559-8568
R. Schlögl, Journal of Molecular Catalysis A: [32] M. Bodegard, K. Granath, L. Stolt, A. Rockett,
Chemical 174 (2001) 169–185 Solar Energy Materials and Solar Cells 58 (1999)
[21] A. Bollero, L. Kaupmees, Thin Solid Films 520 199-208
(2012) 4163-4168 [33] D. Brémaud, Investigation and development
[22] R. Sharma, G. Reddy, AIP ADVANCES 3, 092112 of CIGS solar cells on flexible substrates and
(2013) with alternative electrical back contacts, Thesis
[23] A. Chowdhury, D. Cameron, M. Hashmi, Thin Zürich, 2009
Solid Films 332 (1998) 62-68 [34] Collaboration: Authors and editors of the vol-
[24] M. Veres, M. Füle, S. Tóth, M. Koós, I. Pócsik, Di- umes III/17G-41D: O. Madelung, U. Rössler, M.
amond and Related Materials 13 (2004) 1412– Schulz, ´MoO 3 : thermal expansion, density´
1415 Springer Materials - The Landolt-Börnstein Da-
[25] ICDD JCPDS cards 00-042-1120 (cubic mo- tabase (http://www.springermaterials.com).
lybdenum), 00-029-0914 (hexagonal MoSe), [35] V. Saji, C. Lee, Chem Sus Chem 5(7) (2012) 1146-
2
00-032-0671 (monoclinic MoO 2 ) 00-005-0508 1161
(orthorhombic MoO 3 ), 00-047-1081 (monoclin- [36] D. Thomas, E. McCarron, Materials Research Bul-
ic MoO 3 ), 00-047-1320 (monoclinic MoO 3 ), 00- letin 21 (8) (1986) 945–960
012-0753 (anorthic MoO 26 ) and 00-013-0345 [37] K. Eda, K. Chin, N. Sotani, M. Stanley Whitting-
9
172