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Published on: September 8, 2017
Ultrafast Photoexcitation Induced Nonthermal Lattice Expansion in 2D Perovskite
Xiangyu Chen1,2, Jiakang Zhou1, Yunfan Yue1
1Center of Femtosecond Laser Manufacturing for Advanced Materials and Devices, State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan, 430070, P. R. China.
Abstract:
Light-induced lattice change of perovskites is found to be critical for device performance. However, the underlying mechanism is still not fully understood. Here, real-time time-dependent density functional theory (rt-TDDFT) calculations along with experiments are utilized to discern the photo-induced electronic and structural changes in 2D Dion-Jacobson (DJ) perovskites, showing that photoexcitation drives the non-thermal lattice expansion, leading to the increase in bandgap. The ultrafast photoexcitation effect is found to improve the film crystallinity and charge transport, which brings a longer carrier lifetime and slower carrier recombination rate, leading to remarkable improvement of photovoltaic performance. These results not only provide insights into the photo-physics of perovskites, but also show the potential of a new passivation technique for perovskite optoelectronics via ultrafast photoexcitation.
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