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Unravelling the role of vacancies in lead halide perovskite through electrical switching of photoluminescence, , , and . Nature Communications, 9 (1): 5113-- (2018)Changes from Bulk to Surface Recombination Mechanisms between Pristine and Cycled Perovskite Solar Cells, , , , , , , and . ACS Energy Letters, 0 (0): 681-688 (0)Crystalline-Size Dependence of Dual Emission Peak on Hybrid Organic Lead-Iodide Perovskite Films at Low Temperatures, , , , and . The Journal of Physical Chemistry C, 122 (39): 22717--22727 (September 2018)Changes from Bulk to Surface Recombination Mechanisms between Pristine and Cycled Perovskite Solar Cells, , , , , , , and . ACS Energy Letters, 2 (3): 681-688 (2017)Toward High-Temperature Stability of PTB7-Based Bulk Heterojunction Solar Cells: Impact of Fullerene Size and Solvent Additive, , , , , , , , , and 3 other author(s). Advanced Energy Materials, (2016)Master equation approach to the non-equilibrium negative specific heat at the glass transition. American Journal of Physics, 73 (8): 735--741 (2005)Perovskite Solar Cell Modeling Using Light- and Voltage-Modulated Techniques, , , , , and . The Journal of Physical Chemistry C, 123 (11): 6444--6449 (February 2019)Inductive Loop in the Impedance Response of Perovskite Solar Cells Explained by Surface Polarization Model, , , and . The Journal of Physical Chemistry Letters, 8 (7): 1402-1406 (2017)PMID: 28287736.Effects of Frequency Dependence of the External Quantum Efficiency of Perovskite Solar Cells, , , , , and . The Journal of Physical Chemistry Letters, 9 (11): 3099--3104 (May 2018)Ionic Reactivity at Contacts and Aging of Methylammonium Lead Triiodide Perovskite Solar Cells, , , , , , , and . Advanced Energy Materials, 6 (9): n/a--n/a (2016)