Uppsala University, Sweden
Office Segerstedthuset, Dag Hammarskjölds väg 7, 752 37 Uppsalarektor@uu.se
Lab Website
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Education
1993 PhD, Physical Chemistry; Uppsala University (Profs. Hans Siegbahn, Sten-Eric Lindquist, Sten Lunell)
1989 Master of Science (Fil.kand.) in Physics and Chemistry; Uppsala University
Experience
2021 - present Vice Chancellor (President) of Uppsala University, Sweden
2014 - 2020 Professor chair in Physical Chemistry, EPFL
2007 Professor chair in Physical Chemistry, Uppsala University
2004 Professor in Chemical Physics, Uppsala University
Research Interest
Dye-sensitized solar cells
Perovskite solar cells
Solar fuels
Journal Articles
(2023) Coordination modulated passivation for stable organic-inorganic perovskite solar cells, Kajal, S., Jeong, J., Seo, J., Anand, R., Kim, Y. et al. Chemical Engineering Journal, Elsevier. 451 2023.
(2023) Hydroxamic acid pre-adsorption raises the efficiency of cosensitized solar cells, Ren, Y., Zhang, D., Suo, J., Cao, Y., Eickemeyer, F. et al. Nature, Springer Nature. 613(7942): 60-65 2023.
(2022) Perovskite Solar Cells with Carbon-Based Electrodes - Quantification of Losses and Strategies to Overcome Them, Bogachuk, D., Yang, B., Suo, J., Martineau, D., Verma, A. et al. Advanced Energy Materials, Wiley. 12(10) 2022.
(2022) Reevaluation of Photoluminescence Intensity as an Indicator of Efficiency in Perovskite Solar Cells, Campanari, V., Martelli, F., Agresti, A., Pescetelli, S., Nia, N. et al. Solar RRL, Wiley. 6(8) 2022.
(2022) N-Type Conductive Small Molecule Assisted 23.5% Efficient Inverted Perovskite Solar Cells, Cao, Q., Li, Y., Zhang, Y., Zhao, J., Wang, T. et al. Advanced Energy Materials, Wiley. 12(34) 2022.
(2022) Oriented Crystal Growth during Perovskite Surface Reconstruction, Choi, H., Kim, Y., Hong, S., Yang, B., Suo, J. et al. ACS Applied Materials and Interfaces, American Chemical Society (ACS). 14(45): 51149-51156 2022.
(2022) Experimental and theoretical study of organic sensitizers for solid-state dye-sensitized solar cells (s-DSSCs), Delices, A., Zhang, J., Santoni, M., Dong, C., Maurel, F. et al. Journal of Photochemistry and Photobiology A: Chemistry, Elsevier BV. 428 2022.
(2022) Thiocyanate-Mediated Dimensionality Transformation of Low- Dimensional Perovskites for Photovoltaics, Hong, L., Wang, Z., Milic, J., Avalos, C., Zhang, W. et al. Chemistry of Materials, American Chemical Society (ACS). 34(14): 6331-6338 2022.
(2022) Additives-free indolo[3,2-b]carbazole-based hole-transporting materials for perovskite solar cells with three yeses: Stability, efficiency, simplicity, Kim, Y., Yang, B., Suo, J., Jatautiene, E., Simokaitiene, J. et al. Nano Energy, Elsevier BV. 101 2022.
(2022) Recent Progress of Critical Interface Engineering for Highly Efficient and Stable Perovskite Solar Cells, Li, Y., Xie, H., Lim, E., Hagfeldt, A., Bi, D. Advanced Energy Materials, Wiley. 12(5) 2022.
(2022) Probing photovoltaic performance in copper electrolyte dye-sensitized solar cells of variable TiO2 particle size using comprehensive interfacial analysis, Pradhan, S., Velore, J., Hagfeldt, A., Soman, S., Journal of Materials Chemistry C, Royal Society of Chemistry. 10(10): 3929-3936 2022.
(2022) Progress and Perspective on Inorganic CsPbI2Br Perovskite Solar Cells, Song, J., Xie, H., Lim, E., Hagfeldt, A., Bi, D. Advanced Energy Materials, John Wiley & Sons. 12(40) 2022.
(2022) Interfacial engineering from material to solvent: A mechanistic understanding on stabilizing alpha-formamidinium lead triiodide perovskite photovoltaics, Suo, J., Yang, B., Jeong, J., Zhang, T., Olthof, S. et al. Nano Energy, Elsevier BV. 94 2022.
(2022) Understanding Mass Transport in Copper Electrolyte-Based Dye-Sensitized Solar Cells, Velore, J., Pradhan, S., Hamann, T., Hagfeldt, A., Unni, K. et al. ACS Applied Energy Materials, American Chemical Society (ACS). 5(3): 2647-2654 2022.
(2022) Hysteresis-Free Planar Perovskite Solar Module with 19.1% Efficiency by Interfacial Defects Passivation, Vesce, L., Stefanelli, M., Castriotta, L., Hadipour, A., Lammar, S. et al. Solar RRL, John Wiley & Sons. 6(7) 2022.