异质结
费斯特共振能量转移
材料科学
三极管
电子
共振(粒子物理)
堆积
激子
电介质
光电子学
光致发光
凝聚态物理
物理
原子物理学
光学
核磁共振
量子力学
荧光
作者
Zehua Hu,Pedro Ludwig Hernández‐Martínez,Xue Liu,Mohamed-Raouf Amara,Weijie Zhao,Kenji Watanabe,Takashi Taniguchi,Hilmi Volkan Demir,Qihua Xiong
出处
期刊:ACS Nano
[American Chemical Society]
日期:2020-09-23
卷期号:14 (10): 13470-13477
被引量:37
标识
DOI:10.1021/acsnano.0c05447
摘要
van der Waals two-dimensional layered heterostructures have recently emerged as a platform, where the interlayer couplings give rise to interesting physics and multifunctionalities in optoelectronics. Such couplings can be rationally controlled by dielectric, separation, and stacking angles, which affect the overall charge or energy-transfer processes, and emergent potential landscape for twistronics. Herein, we report the efficient Förster resonance energy transfer (FRET) in WS2/hBN/MoSe2 heterostructure, probed by both steady-state and time-resolved optical spectroscopy. We clarified the evolution behavior of the electron-hole pairs and free electrons from the trions, that is, ∼59.9% of the electron-hole pairs could transfer into MoSe2 by FRET channels (∼38 ps) while the free electrons accumulate at the WS2/hBN interface to photogate MoSe2. This study presents a clear picture of the FRET process in two-dimensional transition-metal dichalcogenides' heterojunctions, which establishes the scientific foundation for developing the related heterojunction optoelectronic devices.
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