Structural, Electronic and Optical Properties of Some New Trilayer Van de Waals Heterostructures

Author:

Cheng Beitong1ORCID,Zhou Yong12,Jiang Ruomei1,Wang Xule1,Huang Shuai1,Huang Xingyong3,Zhang Wei1,Dai Qian1,Zhou Liujiang4,Lu Pengfei5,Song Hai-Zhi146ORCID

Affiliation:

1. Quantum Research Center, Southwest Institute of Technical Physics, Chengdu 610041, China

2. School of Electronic Engineering, Chengdu Technological University, Chengdu 611730, China

3. Faculty of Science, Yibin University, Yibin 644007, China

4. Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu 610054, China

5. State Key Laboratory of Information Photonics and Optical Communications, Beijing University of Posts and Telecommunications, Beijing 100876, China

6. State Key Laboratory of High Power Semiconductor Lasers, Changchun University of Science and Technology, Changchun 130013, China

Abstract

Constructing two-dimensional (2D) van der Waals (vdW) heterostructures is an effective strategy for tuning and improving the characters of 2D-material-based devices. Four trilayer vdW heterostructures, BP/BP/MoS2, BlueP/BlueP/MoS2, BP/graphene/MoS2 and BlueP/graphene/MoS2, were designed and simulated using the first-principles calculation. Structural stabilities were confirmed for all these heterostructures, indicating their feasibility in fabrication. BP/BP/MoS2 and BlueP/BlueP/MoS2 lowered the bandgaps further, making them suitable for a greater range of applications, with respect to the bilayers BP/MoS2 and BlueP/MoS2, respectively. Their absorption coefficients were remarkably improved in a wide spectrum, suggesting the better performance of photodetectors working in a wide spectrum from mid-wave (short-wave) infrared to violet. In contrast, the bandgaps in BP/graphene/MoS2 and BlueP/graphene/MoS2 were mostly enlarged, with a specific opening of the graphene bandgap in BP/graphene/MoS2, 0.051 eV, which is much larger than usual and beneficial for optoelectronic applications. Accompanying these bandgap increases, BP/graphene/MoS2 and BlueP/graphene/MoS2 exhibit absorption enhancement in the whole infrared, visible to deep ultraviolet or solar blind ultraviolet ranges, implying that these asymmetrically graphene-sandwiched heterostructures are more suitable as graphene-based 2D optoelectronic devices. The proposed 2D trilayer vdW heterostructures are prospective new optoelectronic devices, possessing higher performance than currently available devices.

Funder

the National Key Research and Development Program of China

Natural Science Foundation of Sichuan Province

Special Subject of Significant Science and Technology of Sichuan Province

Special Subject of Significant Innovation of Chengdu City

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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