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Growth Engineering of CH3NH3PbI3 Structures for High-Efficiency Solar Cells, , , , und . Advanced Energy Materials, 6 (2): n/a--n/a (2016)Impact of Monovalent Cation Halide Additives on the Structural and Optoelectronic Properties of CH3NH3PbI3 Perovskite, , , , , , , , , und 1 andere Autor(en). Advanced Energy Materials, 6 (10): n/a--n/a (2016)Large-Grain Tin-Rich Perovskite Films for Efficient Solar Cells via Metal Alloying Technique, , , und . Advanced Materials, (2018)Kinetics of Ion-Exchange Reactions in Hybrid Organic–Inorganic Perovskite Thin Films Studied by In Situ Real-Time X-ray Scattering, , , , , , , und . The Journal of Physical Chemistry Letters, 9 (23): 6750--6754 (November 2018)Effect of Cation Composition on the Mechanical Stability of Perovskite Solar Cells, , , , , , , , , und 10 andere Autor(en). Advanced Energy Materials, (2017)Adamantanes Enhance the Photovoltaic Performance and Operational Stability of Perovskite Solar Cells by Effective Mitigation of Interfacial Defect States, , , , , und . Advanced Energy Materials, (Januar 2018)Enhanced Efficiency and Stability of Perovskite Solar Cells Through Nd-Doping of Mesostructured TiO2, , , , , , , , , und 1 andere Autor(en). Advanced Energy Materials, 6 (2): n/a--n/a (2016)Multifunctional molecular modulators for perovskite solar cells with over 20% efficiency and high operational stability, , , , , , , , , und 1 andere Autor(en). Nature Communications, 9 (1): 4482-- (2018)Growth of CH3NH3PbI3 cuboids with controlled size for high-efficiency perovskite solar cells, , , , und . Nature Nanotech, 9 (11): 927--932 (August 2014)Formation of Stable Mixed Guanidinium–Methylammonium Phases with Exceptionally Long Carrier Lifetimes for High-Efficiency Lead Iodide-Based Perovskite Photovoltaics, , , , , , , , , und 1 andere Autor(en). Journal of the American Chemical Society, 140 (9): 3345--3351 (Februar 2018)