Zhang Shuchen, Jin Linrui, Lu Yuan, Zhang Linghai, Yang Jiaqi, Zhao Qiuchen, Sun Dewei, Thompson Joshua J P, Yuan Biao, Ma Ke, Park Jee Yung, Lee Yoon Ho, Wei Zitang, Finkenauer Blake P, Blach Daria D, Kumar Sarath, Peng Hailin, Mannodi-Kanakkithodi Arun, Yu Yi, Malic Ermin, Lu Gang, Dou Letian, Huang Libai
Davidson School of Chemical Engineering, Purdue University, West Lafayette, IN, USA.
Key Laboratory of Precision and Intelligent Chemistry, Department of Materials Science and Engineering, School of Chemistry and Materials Science, University of Science and Technology of China, Hefei, China.
Nat Mater. 2024 Sep;23(9):1222-1229. doi: 10.1038/s41563-024-01921-0. Epub 2024 Jun 21.
Moiré superlattices have emerged as a new platform for studying strongly correlated quantum phenomena, but these systems have been largely limited to van der Waals layer two-dimensional materials. Here we introduce moiré superlattices leveraging ultrathin, ligand-free halide perovskites, facilitated by ionic interactions. Square moiré superlattices with varying periodic lengths are clearly visualized through high-resolution transmission electron microscopy. Twist-angle-dependent transient photoluminescence microscopy and electrical characterizations indicate the emergence of localized bright excitons and trapped charge carriers near a twist angle of ~10°. The localized excitons are accompanied by enhanced exciton emission, attributed to an increased oscillator strength by a theoretically predicted flat band. This research showcases the promise of two-dimensional perovskites as unique room-temperature moiré materials.
莫尔超晶格已成为研究强关联量子现象的新平台,但这些系统在很大程度上限于范德华层二维材料。在此,我们介绍了利用超薄、无配体卤化物钙钛矿通过离子相互作用形成的莫尔超晶格。通过高分辨率透射电子显微镜可以清晰地观察到具有不同周期长度的方形莫尔超晶格。扭转角依赖的瞬态光致发光显微镜和电学表征表明,在约10°的扭转角附近出现了局域化的明亮激子和捕获的电荷载流子。这些局域化激子伴随着增强的激子发射,这归因于理论预测的平带导致的振子强度增加。这项研究展示了二维钙钛矿作为独特的室温莫尔材料的前景。