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Analysis of Photoinduced Carrier Recombination Kinetics in Flat and Mesoporous Lead Perovskite Solar Cells, , , , , , , und . ACS Energy Letters, 2 (1): 182-187 (2017)Co-Solvent Effect in the Processing of the Perovskite:Fullerene Blend Films for Electron Transport Layer-Free Solar Cells, , , , , , , , und . The Journal of Physical Chemistry C, 122 (5): 2512--2520 (Januar 2018)A Strategy to Produce High Efficiency, High Stability Perovskite Solar Cells Using Functionalized Ionic Liquid-Dopants, , , , , , , , und . Advanced Materials, 29 (36): n/a--n/a (2017)Heteroatom Effect on Star‐Shaped Hole‐Transporting Materials for Perovskite Solar Cells, , , , , , , , , und 1 andere Autor(en). Advanced Functional Materials, (2018)Tetrathienoanthracene and Tetrathienylbenzene Derivatives as Hole‐Transporting Materials for Perovskite Solar Cell, , , , , , , und . Advanced Energy Materials, (Juli 2018)Heteroatom Effect on Star-Shaped Hole-Transporting Materials for Perovskite Solar Cells, , , , , , , , , und 1 andere Autor(en). Advanced Functional Materials, (2018)Mixed Dimensional 2D/3D Hybrid Perovskite Absorbers: The Future of Perovskite Solar Cells?, , , und . Advanced Functional Materials, (2019)High-Efficiency Perovskite Solar Cells Using Molecularly Engineered, Thiophene-Rich, Hole-Transporting Materials: Influence of Alkyl Chain Length on Power Conversion Efficiency, , , , , , , , und . Advanced Energy Materials, 7 (6): n/a--n/a (2017)High-Efficiency Perovskite Solar Cells Using Molecularly Engineered, Thiophene-Rich, Hole-Transporting Materials: Influence of Alkyl Chain Length on Power Conversion Efficiency, , , , , , , , und . Advanced Energy Materials, (2016)Intrinsic Halide Segregation at Nanometer Scale Determines the High Efficiency of Mixed Cation/Mixed Halide Perovskite Solar Cells, , , , , , , , , und 3 andere Autor(en). Journal of the American Chemical Society, 138 (49): 15821-15824 (2016)PMID: 27960332.