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Moiré superlattices in twisted two-dimensional halide perovskites

  • Shuchen Zhang,
  • Linrui Jin,
  • Yuan Lu,
  • Linghai Zhang,
  • Jiaqi Yang,
  • Qiuchen Zhao,
  • Dewei Sun,
  • Joshua J. P. Thompson,
  • Biao Yuan,
  • Ke Ma,
  • Akriti,
  • Jee Yung Park,
  • Yoon Ho Lee,
  • Zitang Wei,
  • Blake P. Finkenauer,
  • Daria D. Blach,
  • Sarath Kumar,
  • Hailin Peng,
  • Arun Mannodi-Kanakkithodi,
  • Yi Yu,
  • Ermin Malic,
  • Gang Lu,
  • Letian Dou,
  • Libai Huang

摘要

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.