Emergence of a Relaxor Phase and Dimensional Tuning in Mixed 2D Hybrid Perovskites
Появление релаксорной фазы и настройка размерности в смешанных двумерных гибридных перовскитах
2026-06-15
SCID: 54.1/abtr659g
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Ruddlesden–Popper BA2MA n-1 Pb n Br3 n+1cation mixingdielectric measurementsdimethylammonium (DMA)relaxor phase
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Abstract (AI)
High Resolution Image Download MS PowerPoint Slide Mixing of molecular cations in hybrid lead halide perovskites offers a powerful route to tailor their optoelectronic functionality, structural stability, and phase transition behavior. While such compositional engineering has been extensively studied in three-dimensional perovskites, its impact on low-dimensional analogues remains largely unexplored. Here, we investigate cation mixing in the Ruddlesden–Popper BA 2 MA n -1 Pb n Br 3 n +1 two-dimensional perovskites using a comprehensive multitechnique approach. We show that substituting methylammonium (MA) with dimethylammonium (DMA) transforms the long-range ferroelectric phase into a state characterized by frustrated electric dipoles. Broadband dielectric measurements reveal that this state is a relaxor phase, which was previously unobserved in three-dimensional hybrid perovskites. Remarkably, cation mixing also governs perovskite dimensionality, enabling stabilization of thick-slab members up to n = 5 in single-crystal form. These results establish cation mixing as a versatile tool for controlling both polar order and dimensionality in two-dimensional hybrid perovskites.
Key Findings
1
Broadband dielectric measurements identify the frustrated-dipole state induced by cation mixing as a relaxor phase, previously unobserved in three-dimensional hybrid perovskites.
2
Cation mixing controls perovskite dimensionality, enabling stabilization of thicker-slab single crystals up to n = 5.
3
Cation mixing is demonstrated as a versatile tool to simultaneously tune polar order (ferroelectric→relaxor) and structural dimensionality in two-dimensional hybrid perovskites.
4
Substituting methylammonium (MA) with dimethylammonium (DMA) in Ruddlesden–Popper BA2MA n-1 Pb n Br3 n+1 2D perovskites transforms a long-range ferroelectric phase into a state with frustrated electric dipoles.
Research Object
Ruddlesden–Popper BA2MAn-1PbnBr3n+1 two-dimensional hybrid perovskites with mixed methylammonium (MA) and dimethylammonium (DMA) cations
Research Subject
Effect of cation (MA→DMA) mixing on polar order (emergence of a relaxor phase with frustrated dipoles) and on structural dimensionality (stabilization of higher-n thick-slab single-crystal members up to n=5)
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2026-06-15
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