14
C. Ballif
5. J. N. Mayer, S. Philipps, N. Saad, Hussein, T. Schlegl, C. Senkpiel, Current and Future costs
of photovoltiacs, Technical Report. February 2015. https://doi.org/10.13140/rg.2.1.1371.7206
6. E. Vartiainen, G. Masson, C. Breyer, D. Moser, E. Román, Medina impact of weighted average
cost of capital, capital expenditure, and other parameters on future utility-scale PV levelised
cost of electricity, 2019 Progress in Photovoltaics, https://doi.org/10.1002/pip.3189
7. S. K. Chunduri, M. Schmela, Taiyang News “Market Survey on Polysilicon CVD Reactors,
2017”, online version
8. M. A. Green, Y. Hishikawa, W. Warta, E. D. Dunlop, D. H. Levi, J. Hohl-Ebinger, A. W. Y.
W. H. Ho-Baillie, M. Yoshita, A. W. Y. W. H. Ho-Baillie, solar cell efficiency tables (version
54). Prog. Photovoltaics Res. Appl. 27, 565–575 (2019). https://doi.org/10.1002/pip.3171 and
follow-up editions. For the 29.1%, check NREL Best Research-Cell Efficiency Chart, http://
www.nrel.gov/pv/cell-efficiency.html (status April 2020)
9. A. Richter, M. Hermle, S. W. Glunz, Reassessment of the limiting efficiency for crystalline
silicon solar cells. IEEE J. Photovoltaics. 3, 1184–1191 (2013). https://doi.org/10.1109/jphotov.
2013.2270351
10. S. Schäfer, R. Brendel, Accurate calculation of the absorptance enhances efficiency limit of
crystalline silicon solar cells with lambertian light trapping. IEEE J Photovoltaics (2018).
https://doi.org/10.1109/JPHOTOV.2018.2824024
11. J. Werner, F. Sahli, D. Ren, J. Luo, F. Fu, J. J. Diaz Leon, A. Walter, B. A. Kamino, B.
Niesen, M. Graetzel, S. Nicolay, Q. Jeangros, C. Ballif, Textured perovskite/perovskite/silicon
monolithic triple junction solar cells with open-circuit voltage up to 2.69 V, ACS Energy Lett.
3, 9, 2052-2058
12. P. T. Chiu, D. L. Law, R. L. Woo, S. Singer, D. Bhusari, W. D. Hong, A. Zakaria, J. C. Boisvert,
S. Mesropian, R. R. King, N. H. Karam, 35.8% space and 38.8% terrestrial 5 J direct bonded
cells. Proceedings of the 40th IEEE photovoltaic specialist conference, Denver, June 2014;
11–13
13. S. Essig, C. Allebé, T. Remo, J. F. Geisz, M. A. Steiner, K. Horowitz, L. Barraud, J. S. Ward, M.
Schnabel, A. Descoeudres, D. L. Young, M. Woodhouse, M. Despeisse, C. Ballif, A. Tamboli,
Raising the one-sun conversion efficiency of III–V/Si solar cells to 32.8% for two junctions
and 35.9% for three junctions. Nat. Energy. 2, 17144 (2017). https://doi.org/10.1038/nenergy.
2017.144
14. F. Sahli, J. Werner, B. A. Kamino, M. Bräuninger, R. Monnard, B. Paviet-Salomon, L. Barraud,
L. Ding, J. J. Diaz Leon, D. Sacchetto, G. Cattaneo, M. Despeisse, M. Boccard, S. Nicolay, Q.
Jeangros, B. Niesen, and C. Ballif, Fully textured monolithic perovskite/silicon tandem solar
cells with 25,2% power conversion efficiency. Nat. Mater. 17, 820 (2018)
15. C. Ballif, L.E. Perret-Aebi, S. Lufkin, E. Rey, Integrated thinking for photovoltaics in buildings.
Nat. Energy 3, 438 (2018)
C. Ballif
5. J. N. Mayer, S. Philipps, N. Saad, Hussein, T. Schlegl, C. Senkpiel, Current and Future costs
of photovoltiacs, Technical Report. February 2015. https://doi.org/10.13140/rg.2.1.1371.7206
6. E. Vartiainen, G. Masson, C. Breyer, D. Moser, E. Román, Medina impact of weighted average
cost of capital, capital expenditure, and other parameters on future utility-scale PV levelised
cost of electricity, 2019 Progress in Photovoltaics, https://doi.org/10.1002/pip.3189
7. S. K. Chunduri, M. Schmela, Taiyang News “Market Survey on Polysilicon CVD Reactors,
2017”, online version
8. M. A. Green, Y. Hishikawa, W. Warta, E. D. Dunlop, D. H. Levi, J. Hohl-Ebinger, A. W. Y.
W. H. Ho-Baillie, M. Yoshita, A. W. Y. W. H. Ho-Baillie, solar cell efficiency tables (version
54). Prog. Photovoltaics Res. Appl. 27, 565–575 (2019). https://doi.org/10.1002/pip.3171 and
follow-up editions. For the 29.1%, check NREL Best Research-Cell Efficiency Chart, http://
www.nrel.gov/pv/cell-efficiency.html (status April 2020)
9. A. Richter, M. Hermle, S. W. Glunz, Reassessment of the limiting efficiency for crystalline
silicon solar cells. IEEE J. Photovoltaics. 3, 1184–1191 (2013). https://doi.org/10.1109/jphotov.
2013.2270351
10. S. Schäfer, R. Brendel, Accurate calculation of the absorptance enhances efficiency limit of
crystalline silicon solar cells with lambertian light trapping. IEEE J Photovoltaics (2018).
https://doi.org/10.1109/JPHOTOV.2018.2824024
11. J. Werner, F. Sahli, D. Ren, J. Luo, F. Fu, J. J. Diaz Leon, A. Walter, B. A. Kamino, B.
Niesen, M. Graetzel, S. Nicolay, Q. Jeangros, C. Ballif, Textured perovskite/perovskite/silicon
monolithic triple junction solar cells with open-circuit voltage up to 2.69 V, ACS Energy Lett.
3, 9, 2052-2058
12. P. T. Chiu, D. L. Law, R. L. Woo, S. Singer, D. Bhusari, W. D. Hong, A. Zakaria, J. C. Boisvert,
S. Mesropian, R. R. King, N. H. Karam, 35.8% space and 38.8% terrestrial 5 J direct bonded
cells. Proceedings of the 40th IEEE photovoltaic specialist conference, Denver, June 2014;
11–13
13. S. Essig, C. Allebé, T. Remo, J. F. Geisz, M. A. Steiner, K. Horowitz, L. Barraud, J. S. Ward, M.
Schnabel, A. Descoeudres, D. L. Young, M. Woodhouse, M. Despeisse, C. Ballif, A. Tamboli,
Raising the one-sun conversion efficiency of III–V/Si solar cells to 32.8% for two junctions
and 35.9% for three junctions. Nat. Energy. 2, 17144 (2017). https://doi.org/10.1038/nenergy.
2017.144
14. F. Sahli, J. Werner, B. A. Kamino, M. Bräuninger, R. Monnard, B. Paviet-Salomon, L. Barraud,
L. Ding, J. J. Diaz Leon, D. Sacchetto, G. Cattaneo, M. Despeisse, M. Boccard, S. Nicolay, Q.
Jeangros, B. Niesen, and C. Ballif, Fully textured monolithic perovskite/silicon tandem solar
cells with 25,2% power conversion efficiency. Nat. Mater. 17, 820 (2018)
15. C. Ballif, L.E. Perret-Aebi, S. Lufkin, E. Rey, Integrated thinking for photovoltaics in buildings.
Nat. Energy 3, 438 (2018)
