您的账号已在其他设备登录,您当前账号已强迫下线,
如非您本人操作,建议您在会员中心进行密码修改

确定
收藏 | 浏览39

The electronic structure of two-dimensional (2D) semiconductors can be significantly altered by screening effects, either from free charge carriers in the material or by environmental screening from the surrounding medium. The physical properties of 2D semiconductors placed in a heterostructure with other 2D materials are therefore governed by a complex interplay of both intra- and interlayer interactions. Here, using time- and angle-resolved photoemission, we are able to isolate both the layer-resolved band structure and, more importantly, the transient band structure evolution of a model 2D heterostructure formed of a single layer of MoS2 on graphene. Our results reveal a pronounced renormalization of the quasiparticle gap of the MoS2 layer. Following optical excitation, the band gap is reduced by up to ∼400 meV on femtosecond time scales due to a persistence of strong electronic interactions despite the environmental screening by the n-doped graphene. This points to a large degree of tunability of both the electronic structure and the electron dynamics for 2D semiconductors embedded in a van der Waals-bonded heterostructure.

作者:S?ren, Ulstrup;Antonija Grubi?i?, ?abo;Jill A, Miwa;Jonathon M, Riley;Signe S, Gr?nborg;Jens C, Johannsen;Cephise, Cacho;Oliver, Alexander;Richard T, Chapman;Emma, Springate;Marco, Bianchi;Maciej, Dendzik;Jeppe V, Lauritsen;Phil D C, King;Philip, Hofmann

来源:ACS nano 2016 年 10卷 6期

知识库介绍

临床诊疗知识库该平台旨在解决临床医护人员在学习、工作中对医学信息的需求,方便快速、便捷的获取实用的医学信息,辅助临床决策参考。该库包含疾病、药品、检查、指南规范、病例文献及循证文献等多种丰富权威的临床资源。

详细介绍
热门关注
免责声明:本知识库提供的有关内容等信息仅供学习参考,不代替医生的诊断和医嘱。

收藏
| 浏览:39
作者:
S?ren, Ulstrup;Antonija Grubi?i?, ?abo;Jill A, Miwa;Jonathon M, Riley;Signe S, Gr?nborg;Jens C, Johannsen;Cephise, Cacho;Oliver, Alexander;Richard T, Chapman;Emma, Springate;Marco, Bianchi;Maciej, Dendzik;Jeppe V, Lauritsen;Phil D C, King;Philip, Hofmann
来源:
ACS nano 2016 年 10卷 6期
标签:
2D material heterostructures MoS2 band gap renormalization graphene transition metal dichalcogenides ultrafast time- and angle-resolved photoemission
The electronic structure of two-dimensional (2D) semiconductors can be significantly altered by screening effects, either from free charge carriers in the material or by environmental screening from the surrounding medium. The physical properties of 2D semiconductors placed in a heterostructure with other 2D materials are therefore governed by a complex interplay of both intra- and interlayer interactions. Here, using time- and angle-resolved photoemission, we are able to isolate both the layer-resolved band structure and, more importantly, the transient band structure evolution of a model 2D heterostructure formed of a single layer of MoS2 on graphene. Our results reveal a pronounced renormalization of the quasiparticle gap of the MoS2 layer. Following optical excitation, the band gap is reduced by up to ∼400 meV on femtosecond time scales due to a persistence of strong electronic interactions despite the environmental screening by the n-doped graphene. This points to a large degree of tunability of both the electronic structure and the electron dynamics for 2D semiconductors embedded in a van der Waals-bonded heterostructure.