【摘 要】
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Morphology control of perovskite films is of critical importance for high-performance photovoltaic devices.Although solvent vapor annealing (SVA) treatment has
【机 构】
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School of Physics and Astronomy and Collaborative Innovation Center of IFSA (CICIFSA),Shanghai Jiao
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Morphology control of perovskite films is of critical importance for high-performance photovoltaic devices.Although solvent vapor annealing (SVA) treatment has been widely used to improve the film quality efficiently,the detailed mecha-nism of film growth is sti11 under construction,and there is still no consensus on the selection of solvents and volume for further optimization.Here,a series of solvents (DMF,DMSO,mixed DMF/DMSO) were opted for exploring their impact on fundamental structural and physical properties of perovskite films and the performance of corresponding devices.Mixed solvent SVA treatment resulted in unique benefits that integrated the advantages of each solvent,generating a champion device efficiency of 19.76% with improved humidity and thermal stability.The crystallization mechanism was constructed by conducting grazing-incidence wide-angle x-ray diffraction (GIWAXS) characterizations,showing that dissolution and recrystallization dominated the film formation.A proper choice of solvent and its volume balancing the two processes thus afforded the desired perovskite film.This study reveals the underlying process of film formation,paving the way to producing energy-harvesting materials in a controlled manner towards energy-efficient and stable perovskite-based devices.
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