Bechir Mohamed Ben, Znaidia Sami
Laboratory of Spectroscopic and Optical Characterization of Materials (LaSCOM), Faculty of Sciences, University of Sfax, Sfax BP1171 - 3000, Tunisia.
College of Sciences and Arts in Mahayel Asir, Department of Physics, King Khalid University, Abha, Saudi Arabia.
Phys Chem Chem Phys. 2023 Jul 26;25(29):19684-19692. doi: 10.1039/d3cp02176a.
Lead-free halide double perovskites AMM'X (A = Rb, Cs, ; M = Ag, K, Li; M' = Sb, In or Bi and X = I, Br or Cl) have recently been suggested as an alternative to lead-based halide perovskites for optoelectronic and photovoltaic applications. While a great deal of effort has been put into device engineering to improve the performance of photovoltaic and optoelectronic devices that are based on AMM'X double perovskites, there has been relatively little attention given to their inherent photophysical properties. The current research demonstrates that small polaron formation under photoexcitation and polaron localization limit the carrier dynamics in the CsCuSbCl double halide perovskite. In addition, temperature-dependent AC conductivity measurements indicate that single polaron hopping is the primary conduction mechanism. The ultrafast transient absorption spectroscopy results revealed that the formation of small polarons, which function as self-trapped states (STSs) and result in the ultrafast trapping of charge carriers, are caused by a distorted lattice under photoexcitation. These findings provide a thorough understanding of the intrinsic restrictions of CsCuSbCl perovskite and could have relevance for other antimony-based semiconductors.
无铅卤化物双钙钛矿AMM'X(A = Rb、Cs;M = Ag、K、Li;M' = Sb、In或Bi,且X = I、Br或Cl)最近被提议作为基于铅的卤化物钙钛矿在光电子和光伏应用中的替代品。虽然已经投入了大量精力进行器件工程,以提高基于AMM'X双钙钛矿的光伏和光电器件的性能,但对其固有的光物理性质的关注相对较少。当前的研究表明,光激发下小极化子的形成和极化子局域化限制了CsCuSbCl双卤化物钙钛矿中的载流子动力学。此外,温度相关的交流电导率测量表明,单极化子跳跃是主要的传导机制。超快瞬态吸收光谱结果表明,小极化子的形成是由光激发下晶格畸变引起的,这些小极化子作为自陷态(STS),导致电荷载流子的超快俘获。这些发现为CsCuSbCl钙钛矿的内在限制提供了全面的理解,并且可能与其他锑基半导体相关。