Gu Jiazhen, Fu Yongping
Beijing National Laboratory for Molecular Science, State Key Laboratory of Rare Earth Materials Chemistry and Applications, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, China.
ACS Mater Au. 2024 Nov 26;5(1):24-34. doi: 10.1021/acsmaterialsau.4c00101. eCollection 2025 Jan 8.
Two-dimensional lead iodide perovskites have attracted significant attention for their potential applications in optoelectronic and photonic devices due to their tunable excitonic properties. The choice of organic spacer cations significantly influences the light emission and exciton transport properties of these materials, which are vital for their device performance. In this Perspective, we discuss the impact of spacer cations on lattice dynamics and exciton-phonon coupling, focusing on three representative 2D lead iodide perovskites that exhibit distinct types of structural distortions. Minimizing structural distortions, such as dynamic out-of-plane octahedral tilting and lone pair distortion, appears to be essential for achieving narrow photoluminescence (PL) emission peaks, high PL quantum yields, and rapid exciton diffusion by suppressing exciton-phonon coupling, as demonstrated in 2D perovskites based on phenylethylammonium cation or its derivatives. We propose that designing spacer cations with enhanced intermolecular interactions and denser packing, combined with the close packing of inorganic ions to minimize the motions of both organic and inorganic lattices, would be the ideal scenario for yielding the most favorable optoelectronic properties in these materials.
二维碘化铅钙钛矿因其可调谐的激子特性在光电器件和光子器件中的潜在应用而备受关注。有机间隔阳离子的选择对这些材料的发光和激子传输特性有显著影响,而这些特性对其器件性能至关重要。在本综述中,我们讨论间隔阳离子对晶格动力学和激子 - 声子耦合的影响,重点关注三种表现出不同类型结构畸变的代表性二维碘化铅钙钛矿。如基于苯乙铵阳离子或其衍生物的二维钙钛矿所示,最小化结构畸变,如动态面外八面体倾斜和孤对畸变,对于通过抑制激子 - 声子耦合实现窄的光致发光(PL)发射峰、高PL量子产率和快速激子扩散似乎至关重要。我们提出,设计具有增强分子间相互作用和更紧密堆积的间隔阳离子,结合无机离子的紧密堆积以最小化有机和无机晶格的运动,将是在这些材料中产生最有利光电特性的理想方案。