Zhang Linghai, Zhang Xu, Lu Gang
Department of Physics and Astronomy, California State University Northridge California 91330-8268 USA
Chem Sci. 2021 Mar 23;12(17):6073-6080. doi: 10.1039/d1sc00359c.
Recent breakthrough in synthesizing arbitrary vertical heterostructures of Ruddlesden-Popper (RP) perovskites opens doors to myriad quantum optoelectronic applications. However, it is not clear whether moiré excitons and flat bands can be formed in such heterostructures. Here, we predict from first principles that twisted homobilayers of RP perovskite, MAPbI, can host moiré excitons and yield flat energy bands. The moiré excitons exhibit unique and hybridized characteristics with electrons confined in a single layer of a striped distribution while holes localized in both layers. Nearly flat valence bands can be formed in the bilayers with relatively large twist angles, thanks to the presence of hydrogen bonds that strengthen the interlayer coupling. External pressures can further increase the interlayer coupling, yielding more localized moiré excitons and flatter valence bands. Finally, electrostatic gating is predicted to tune the degree of hybridization, energy, position and localization of moiré excitons in twisted MAPbI bilayers.
最近在合成任意垂直结构的Ruddlesden-Popper(RP)钙钛矿方面取得的突破为众多量子光电子应用打开了大门。然而,目前尚不清楚在这种异质结构中是否能形成莫尔激子和平带。在此,我们基于第一性原理预测,RP钙钛矿MAPbI的扭曲同质双层可以承载莫尔激子并产生平带。莫尔激子表现出独特的杂交特性,电子被限制在单层的条纹分布中,而空穴则定域在两层中。由于存在增强层间耦合的氢键,在具有相对大扭转角的双层中可以形成近乎平的价带。外部压力可以进一步增加层间耦合,产生更多定域的莫尔激子和更平的价带。最后,预计静电门控可以调节扭曲MAPbI双层中莫尔激子的杂交程度、能量、位置和定域化。