Armstrong Zachary T, Forlano Kristel M, Roy Chris R, Bohlmann Kunz Miriam, Farrell Kieran, Pan Dongxu, Wright John C, Jin Song, Zanni Martin T
Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, United States.
J Am Chem Soc. 2023 Aug 23;145(33):18568-18577. doi: 10.1021/jacs.3c05533. Epub 2023 Aug 11.
Quantum confinement in two-dimensional (2D) Ruddlesden-Popper (RP) perovskites leads to the formation of stable quasi-particles, including excitons and biexcitons, the latter of which may enable lasing in these materials. Due to their hybrid organic-inorganic structures and the solution phase synthesis, microcrystals of 2D RP perovskites can be quite heterogeneous, with variations in excitonic and biexcitonic properties between crystals from the same synthesis and even within individual crystals. Here, we employ one- and two-quantum two-dimensional white-light microscopy to systematically study the spatial variations of excitons and biexcitons in microcrystals of a series of 2D RP perovskites BAMAPbI ( = 2-4, BA= butylammonium, MA = methylammonium). We find that the average biexciton binding energy of around 60 meV is essentially independent of the perovskite layer thickness (). We also resolve spatial variations of the exciton and biexciton energies on micron length scales within individual crystals. By comparing the one-quantum and two-quantum spectra at each pixel, we conclude that biexcitons are more sensitive to their environments than excitons. These results shed new light on the ways disorder can modify the energetic landscape of excitons and biexcitons in RP perovskites and how biexcitons can be used as a sensitive probe of the microscopic environment of a semiconductor.
二维(2D)Ruddlesden-Popper(RP)钙钛矿中的量子限制导致形成稳定的准粒子,包括激子和双激子,后者可能使这些材料产生激光发射。由于其有机-无机混合结构和溶液相合成,二维RP钙钛矿的微晶可能非常不均匀,同一合成中的晶体之间甚至单个晶体内的激子和双激子性质都存在差异。在这里,我们采用单量子和双量子二维白光显微镜系统地研究了一系列二维RP钙钛矿BAMAPbI(n = 2-4,BA = 丁基铵,MA = 甲基铵)微晶中激子和双激子的空间变化。我们发现,约60 meV的平均双激子结合能基本上与钙钛矿层厚度(n)无关。我们还解析了单个晶体内微米长度尺度上激子和双激子能量的空间变化。通过比较每个像素处的单量子和双量子光谱,我们得出结论,双激子比激子对其环境更敏感。这些结果为无序如何改变RP钙钛矿中激子和双激子的能量格局以及双激子如何用作半导体微观环境的灵敏探针提供了新的线索。