Green Energy. Группа авторов

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impact on silicon solar cells, J. Electrochem. Soc. 157(10), H942-H946, 2010.

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      19. M. Izzi, M. Tucci, L. Serenelli, P. Mangiapane, M. Della Noce, I. Usatii, E. Esposito, L.V. Mercaldo, P. DelliVeneri, Doped SiOx emitter layer in a morphous/crystalline silicon heterojunction solar cell, Appl. Phys. Mater. Sci. Process 115, 705, 2014.

      20. L. Mazzarella, S. Kirner, B. Stannowski, L. Korte, B. Rech, R. Schlatmann, p-type microcrystalline silicon oxide emitter for silicon heterojunction solar cells allowing current densities above 40 mA/cm2, Appl. Phys. Lett. 106, 023902, 2015.

      21. M. Boccard, Z.C. Holman, Amorphous silicon carbide passivating layers for crystalline-silicon-based heterojunction solar cells, J. Appl. Phys. 118, 065704, 2015.

      22. L.V. Mercaldo, E. Bobeico, I. Usatii, M. Della Noce, L. Lancellotti, L. Serenelli, M. Izzi, M. Tucci, P. DelliVeneri, Potentials of mixed-phase doped layers in ptype Si heterojunction solar cells with ZnO:Al, Sol. Energy Mater. Sol. Cell. 169, 113-121, 2017.

      24. A. Mavlonov, T. Razykov, F. Raziq, J. Gan, J. Chantana, Y. Kawano, , … L. Qiao, A review of Sb2Se3 photovoltaic absorber materials and thin-film solar cells. Solar Energy, 201, 227–246, 2020. doi:10.1016/j. solener.2020.03.009.

      25. L.V. Mercaldo, I. Usatii, E.M. Esposito, P. DelliVeneri, J.W. Schuttauf, E. Moulin, F.J. Haug, C. Zhang, M. Meier, Metal versus dielectric back reflector for thin-film Si solar cells with impact of front electrode surface texture, Prog. Photovoltaics Res. Appl. 24 (2016) 968-977.

      26. L.V. Mercaldo, I. Usatii, P. DelliVeneri, Advances in thin-film Si solar cells by means of SiOx alloys, Energies 9 (3), 218, 2016.

      27. H.A. Atwater, A. Polman, Plasmonics for improved photovoltaic devices, Nat. Mater. 9, 205-213, 2010.

      28. M. J. Naughton, K. Kempa, Z.F. Ren, Y. Gao, J. Rybczynski, N. Argenti, W. Gao,Y. Wang, Y. Peng, J.R. Naughton, G. McMahon, M.J. Burns, A. Shepard, M. Clary, C. Ballif, F.-J. Haug, T. Soderstr € om, O. Cubero, C. Eminian, Efficient nanocoax-based solar cells, Physica Status Solidi RRL 4, 181-183, 2010.

      29. M. Vanececk, O. Babchenko, A. Purkrt, J. Holovsky, N. Neykova, A. Poruba, Z. Remes, J. Meier, U. Kroll, Nanostructured three-dimensional thin film silicon solar cells with very high efficiency potential, Appl. Phys. Lett. 98, 163503, 2011.

      30. V. Ferry, M.A. Verschuuren, M.C. van Lare, R.E.I. Schropp, H.A. Atwater, A. Polman, Optimized spatial correlations for broadband light trapping nanopatterns in high efficiency ultrathin film a-Si:H solar cells, Nano Lett. 11, 4239-4245, 2011.

      31. C. Battaglia, C.M. Hsu, K. Soderstr € om, J. Escarré, F.J. Haug, M. Charriere,M. Boccard, M. Despeisse, D. Alexander, M. Cantoni, Y. Cui, C. Ballif, Light trapping in solar cells: can periodic beat random? ACS Nano 6, 2790-2797, 2012.

      32. A. Micco, A. Ricciardi, M. Pisco, V. La Ferrara, L.V. Mercaldo, P. DelliVeneri, A. Cutolo, A. Cusano, Light trapping efficiency of periodic and quasiperiodic backreflectors for thin film solar cells: a comparative study, J. Appl. Phys. 114, 063103, 2013.

      33. H. Sai, K. Saito, N. Hozuki, M. Kondo, Relationship between the cell thickness and the optimum period of textured back reflectors in thin-film micro-crystalline silicon solar cells, Appl. Phys. Lett. 102, 053509, 2013.

      34. U.W. Paetzold, M. Smeets, M. Meier, K. Bittkau, T. Merdzhanova, V. Smirnov,D. Michaelis, C. Waechter, R. Carius, U. Rau, Disorder improves nanophotonic lighttrapping in thin-film solar cells, Appl. Phys. Lett. 104, 131102, 2014.

      36. C. Battaglia, J. Escarré, K. Soderstr € om, M. Charri € ere, M. Despeisse, F.-J. Haug, C. Ballif, Nanomoulding of transparent zinc oxide electrodes for efficient light trapping in solar cells, Nat. Photon. 5, 535-538, 2011.

      37. A. Richter, M. Hermle, S. Glunz, Crystalline silicon solar cells reassessment of the limiting efficiency for crystalline silicon solar cells, IEEE J. Photovolt. 3, 1184-1191, 2013.

      38. A. Richter, J. Benick, F. Feldmann, A. Fell, M. Hermle, S.W. Glunz, n-type Si solarcells with passivating electron contact: identifying sources for efficiency limitations by wafer thickness and resistivity variation, Sol. Energy Mater. Sol. Cell. 173, 96-105, 2017.

      39. F. Haase, C. Hollemann, S. Sch€afer, A. Merkle, M. Rien€acker, J. Krugener, R. Brendel, R. Peibst, Laser contact openings for local poly-Si-metal contacts enabling 26.1%-efficient POLO-IBC solar cells, Sol. Energy Mater. Sol. Cell. 186, 184-193, 2018.

      40. J. Geissbuhler, J. Werner, S. Martin de Nicolas, L. Barraud, A. Hessler-Wyser, M. Despeisse, S. Nicolay, A. Tomasi, B. Niesen, S. De Wolf, C. Ballif, 22.5% efficient silicon heterojunction solar cell with molybdenum oxide hole collector, Appl. Phys.Lett. 107, 081601, 2015.

      41. 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 IIIeV/Si solar cells to 32.8% for two junctions and 35.9% for three junctions, Nat. Ener. 2, 17144, 2017.

      42. L. V. Mercaldo, & P. Delli Veneri, Silicon solar cells: materials, technologies, architectures. Solar Cells and Light Management, 35-57, 2020. doi:10.1016/ b978-0-08-102762-2.00002-1

      43. H.J. Snaith, Present status and future prospects of perovskite photovoltaics, Nat.Mater. 17, 372-376, 2018. https://doi.org/10.1038/s41563-018-0071-z.

      44. J. Huang, Y. Yuan, Y. Shao, Y. Yan, Understanding the physical properties of hybrid perovskites for photovoltaic applications, Nat. Rev. Mater. 2, 17042, 2017. https://doi.org/10.1038/natrevmats.2017.42.

      45. A. Kojima, K. Teshima, Y. Shirai, T. Miyasaka, Organometal halide perovskites asvisible-light sensitizers


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