化学
激子
云纹
双层
凝聚态物理
化学物理
光学
物理
膜
生物化学
作者
Yingcong Liu,Fulong Dai,Haokun Bai,Xiayue Fan,Ruiqi Wang,Xuzhi Zheng,Zhaozhao Xiong,Haochun Sun,Zhuojian Liang,Zhuo Kang,Yue Zhang
摘要
orbital induced band edge states enabled by the unique sp-C in bilayer γ-graphdiyne (GDY), an ultradeep moiré potential of ∼289 meV is yielded. After being twisted into the hole-to-hole layer stacking configuration, the interlayer coupling is substantially intensified to augment the lattice potential of bilayer GDY up to 475%. The presence of lateral constrained moiré potential shifts the spatial distribution of electrons and holes in excitons from the regular alternating mode to their respective separated and localized mode. According to the well-established wave function distribution of electrons contained in excitons, the AA-stacked site is identified to serve for exciton localization. This work extends the materials systems available for moiré superlattice design further to serial carbon allotropes featured with benzene ring-alkyne chain coupling, unlocking tremendous potential for twistronic-based quantum device applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI