文献详情
Direct Vapor Growth of 2D Vertical Heterostructures with Tunable Band Alignments and Interfacial Charge Transfer Behaviors
文献类型:期刊
期刊名称:Advanced science (Weinheim, Baden-Wurttemberg, Germany)
年:2019
卷:6
期:7
页码:1802204
ISSN:2198-3844
关键词:band alignments,charge transfers,photoluminescence enhancement,photoluminescence quenching,van der Waals heterostructures
所属部门:物理学系
摘要:2D vertical van der Waals (vdW) heterostructures with atomically sharp interfaces have attracted tremendous interest in 2D photonic and optoelectronic applications. Band alignment engineering in 2D heterostructures provides a perfect platform for tailoring interfacial charge transfer behaviors, from which desired optical and optoelectronic features can be realized. Here, by developing a two-step chemical vapor deposition strategy, direct vapor growth of monolayer PbI2 on monolayer transition met ...More
2D vertical van der Waals (vdW) heterostructures with atomically sharp interfaces have attracted tremendous interest in 2D photonic and optoelectronic applications. Band alignment engineering in 2D heterostructures provides a perfect platform for tailoring interfacial charge transfer behaviors, from which desired optical and optoelectronic features can be realized. Here, by developing a two-step chemical vapor deposition strategy, direct vapor growth of monolayer PbI2 on monolayer transition metal dichalcogenides (TMDCs) (WS2, WSe2, or alloying WS2(1-x)Se2x ), forming bilayer vertical heterostructures, is demonstrated. Based on the calculated electron band structures, the interfacial band alignments of the obtained heterostructures can be gradually tuned from type-I (PbI2/WS2) to type-II (PbI2/WSe2). Steady-state photoluminescence (PL) and time-resolved PL measurements reveal that the PL emissions from the bottom TMDC layers can be modulated from apparently enhanced (for WS2) to greatly quenched (for WSe2) compared to their monolayer counterparts, which can be attributed to the band alignment-induced distinct interfacial charge transfer behaviors. The band alignment nature of the heterostructures is further demonstrated by the PL excitation spectroscopy and interlayer exciton investigation. The realization of 2D vertical heterostructures with tunable band alignments will provide a new material platform for designing and constructing multifunctional optoelectronic devices. ...Hide
DOI:10.1002/advs.201802204
百度学术:Direct Vapor Growth of 2D Vertical Heterostructures with Tunable Band Alignments and Interfacial Charge Transfer Behaviors
语言:外文
作者其他论文
Charge-governed phase manipulation of few-layer tellurium.Wang Cong, Zhou Xieyu, Qiao Jingsi, et al. .Nanoscale. 2018.
Wet Chemical Method for Black Phosphorus Thinning and Passivation.Fan Shuangqing, Qiao JingSi, Lai Jiawei, et al. .ACS applied materials & interfaces. 2019, 11(9), 9213-9222.
Interfacial water intercalation-induced metal-insulator transition in NbS2/BN heterostructure.Xu Rui, Wang Xinsheng, Zheng Zhiyue, et al. .Nanotechnology. 2019, 30(20), 205702.
Engineering Point-Defect States in Monolayer WSe2.Zhang Chendong, Wang Cong, Yang Feng, et al. .ACS nano. 2019, 13(2), 1595-1602.
Unusual Electronic States and Superconducting Proximity Effect of Bi Films Modulated by a NbSe2 Substrate.Peng Lang, Qiao Jingsi, Xian Jing-Jing, et al. .ACS nano. 2019, 13(2), 1885-1892.
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Direct Vapor Growth of 2D Vertical Heterostructures with Tunable Band Alignments and Interfacial Cha
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