A type-II NGyne/GaSe heterostructure with high carrier mobility and tunable electronic properties for photovoltaic application

Author:

Zeng Liru,Zhang Siyu,Yao Linwei,Bi Zhisong,Zhang Yanni,Kang PengORCID,Yan Junfeng,Zhang Zhiyong,Yun JiangniORCID

Abstract

Abstract The two-dimensional heterostructures with type-II band alignment and super-high carrier mobility offer an updated perspective for photovoltaic devices. Here, based on the first-principles calculation, a novel vertical NGyne/GaSe heterostructure with an intrinsic type-II band alignment, super-high carrier mobility (104 cm2 V−1 s−1), and strong visible to ultraviolet light absorption (104–105 cm−1) is constructed. We investigate the electronic structure and the interfacial properties of the NGyne/GaSe heterostructure under electric field and strain. The band offsets and band gap of the NGyne/GaSe heterostructure can be regulated under applied vertical electric field and strain efficiently. Further study reveals that the photoelectric conversion efficiency of the NGyne/GaSe heterostructure is vastly improved under a negative electric field and reaches up to 25.09%. Meanwhile, near-free electron states are induced under a large applied electric field, leading to the NGyne/GaSe heterostructure transform from semiconductors to metal. Our results indicate that the NGyne/GaSe heterostructure will have extremely potential in optoelectronic devices, especially solar cells.

Funder

the International Science and Technology Cooperation Program of Shaanxi Province

National Natural Science Foundation of China

Publisher

IOP Publishing

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,General Chemistry,Bioengineering

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