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Selective Growth of WSe2 with Graphene Contacts.


ABSTRACT: Nanoelectronics of two-dimensional (2D) materials and related applications are hindered with critical contact issues with the semiconducting monolayers. To solve these issues, a fundamental challenge is selective and controllable fabrication of p-type or ambipolar transistors with a low Schottky barrier. Most p-type transistors are demonstrated with tungsten selenides (WSe2) but a high growth temperature is required. Here, we utilize seeding promoter and low pressure CVD process to enhance sequential WSe2 growth with a reduced growth temperature of 800 °C for reduced compositional fluctuations and high hetero-interface quality. Growth behavior of the sequential WSe2 growth at the edge of patterned graphene is discussed. With optimized growth conditions, high-quality interface of the laterally stitched WSe2-graphene is achieved and characterized with transmission electron microscopy (TEM). Device fabrication and electronic performances of the laterally stitched WSe2-graphene are presented.

SUBMITTER: Lin YT 

PROVIDER: S-EPMC7067944 | biostudies-literature | 2020 Mar

REPOSITORIES: biostudies-literature

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Selective Growth of WSe<sub>2</sub> with Graphene Contacts.

Lin Yu-Ting YT   Zhang Xin-Quan XQ   Chen Po-Han PH   Chi Chong-Chi CC   Lin Erh-Chen EC   Rong Jian-Guo JG   Ouyang Chuenhou C   Chen Yung-Fu YF   Lee Yi-Hsien YH  

Nanoscale research letters 20200312 1


Nanoelectronics of two-dimensional (2D) materials and related applications are hindered with critical contact issues with the semiconducting monolayers. To solve these issues, a fundamental challenge is selective and controllable fabrication of p-type or ambipolar transistors with a low Schottky barrier. Most p-type transistors are demonstrated with tungsten selenides (WSe<sub>2</sub>) but a high growth temperature is required. Here, we utilize seeding promoter and low pressure CVD process to en  ...[more]

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