光致发光
异质结
插层(化学)
过渡金属
范德瓦尔斯力
材料科学
激光器
光电子学
纳米技术
化学物理
化学
无机化学
光学
分子
催化作用
物理
生物化学
有机化学
作者
Junming Song,Yuanfang Yu,Ting Zheng,Yueying Cui,Qiushi Chen,Weiwei Zhao,Fang Yang,Junpeng Lü,Hongwei Liu,Zhenhua Ni
摘要
The integration of two-dimensional transition metal dichalcogenide (TMD) layers into van der Waals (vdW) heterostructures offers substantial opportunities for both materials synthesis and device design. Interlayer interactions enable desirable functionalities, and manipulating these interactions is essential for optimizing device performance. In this work, we introduce ozone intercalation into vdW heterostructures and adopt laser irradiation as a manipulation tool, creating a photoluminescence (PL)-based modulation type using interface engineering. Interlayer engineering can be quantitatively achieved by precisely controlling the laser modification time, enabling a controllable PL intensity from no quenching to quenching. The mechanism behind this regulation can be attributed to the interlayer exciton suppression introduced by ozone intercalation being repaired by ozone molecule reduction during the laser treatment. This effective regulatory technique is universal and can be achieved in various type II band-aligned TMD heterostructures, providing an intriguing strategy for the design of two-dimensional vdW TMD device systems.
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