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‘Donor-free’oligo (3-hexylthiophene) dyes for efficient dye-sensitized solar cells.

‘Donor-free’oligo (3-hexylthiophene) dyes for efficient dye-sensitized solar cells. Hu, Y., Ivaturi, A., Planells, M., Boldrini, C.L., Biroli, A.O. and Robertson, N., 2016. Journal of Materials…

The effect of surface morphology on the performance of 21% n-type PERT solar cells with an epitaxial rear emitter.

The effect of surface morphology on the performance of 21% n-type PERT solar cells with an epitaxial rear emitter. Hajjiah, A., Duerinckx, F., Payo, M.R., Kuzma-Filipek, I. and Poortmans, J., 2016.…

Cu2ZnSnSe4 solar cells with 10.6% efficiency through innovative absorber engineering with Ge superficial nanolayer.

Cu2ZnSnSe4 solar cells with 10.6% efficiency through innovative absorber engineering with Ge superficial nanolayer. Giraldo, S., Thersleff, T., Larramona, G., Neuschitzer, M., Pistor, P., Leifer, K.,…

Crystallisation dynamics in wide-bandgap perovskite films.

Crystallisation dynamics in wide-bandgap perovskite films. Jaysankar, M., Qiu, W., Bastos, J.P., Tait, J.G., Debucquoy, M., Paetzold, U.W., Cheyns, D. and Poortmans, J., 2016. Journal of Materials…

Alkali doping strategies for flexible and light-weight Cu 2 ZnSnSe 4 solar cells.

Alkali doping strategies for flexible and light-weight Cu 2 ZnSnSe 4 solar cells. López-Marino, S., Sánchez, Y., Espíndola-Rodríguez, M., Alcobé, X., Xie, H., Neuschitzer, M., Becerril, I., Giraldo,…

Charge carrier loss mechanisms in CuInS 2/ZnO nanocrystal solar cells.

Charge carrier loss mechanisms in CuInS 2/ZnO nanocrystal solar cells. Scheunemann, D., Wilken, S., Parisi, J. and Borchert, H., 2016. Physical Chemistry Chemical Physics, 18(24),…

Light-Harvesting Properties of Embedded Tin Oxide Nanoparticles for Partial Rear Contact Silicon Solar Cells.

Light-Harvesting Properties of Embedded Tin Oxide Nanoparticles for Partial Rear Contact Silicon Solar Cells. Ghosh, H., Mitra, S., Dhar, S., Nandi, A., Majumdar, S., Saha, H., Datta, S.K. and…

The Importance of Back Contact Modification in Cu2ZnSnSe4 Solar Cells: the Role of a Thin MoO2 Layer.

The Importance of Back Contact Modification in Cu2ZnSnSe4 Solar Cells: the Role of a Thin MoO2 Layer. Lopez-Marino, S., Espíndola-Rodríguez, M., Sánchez, Y., Alcobé, X., Oliva, F., Xie, H.,…

Optical modeling and optimizations of Cu 2 ZnSnSe 4 solar cells using the modified transfer matrix method.

Optical modeling and optimizations of Cu 2 ZnSnSe 4 solar cells using the modified transfer matrix method. Cozza, D., Ruiz, C.M., Duché, D., Giraldo, S., Saucedo, E., Simon, J.J. and Escoubas, L.,…

The role of colloidal plasmonic nanostructures in organic solar cells.

The role of colloidal plasmonic nanostructures in organic solar cells. Singh, C.R., Honold, T., Gujar, T.P., Retsch, M., Fery, A., Karg, M. and Thelakkat, M., 2016. Physical Chemistry Chemical…