Antioxidative 2D Bismuth Selenide via Halide Passivation for Enhanced Device Stability

Author:

Chen Jiayi12,Wu Guodong12,Ding Yamei12,Chen Qichao12,Gao Wenya12,Zhang Tuo12,Jing Xu12,Lin Huiwen12,Xue Feng12,Tao Li12ORCID

Affiliation:

1. School of Materials Science and Engineering, Southeast University, Nanjing 211189, China

2. Jiangsu Key Laboratory for Advanced Metallic Materials, Southeast University, Nanjing 211189, China

Abstract

The topological insulator 2D Bi2Se3 is promising for electronic devices due to its unique electronic properties; however, it is challenging to prepare antioxidative nanosheets since Bi2Se3 is prone to oxidation. Surface passivation using ligand agents after Bi2Se3 exfoliation works well to protect the surface, but the process is time-consuming and technically challenging; a passivation agent that is stable under a highly biased potential is significant for in situ passivation of the Bi2Se3 surface. In this work, the roles of halide anions (Cl−, Br−, and I−) in respect of the chemical properties of synthetic Bi2Se3 nanosheets during electrochemical intercalated exfoliation were investigated to determine the antioxidation capacity. It was found that Bi2Se3 nanosheets prepared in a solution of tetrabutylammonium chloride (TBA+ and Cl−) have the best oxidation resistance via the surface bonding of Bi with Cl, which promotes obtaining better device stability. This work paves an avenue for adjusting the components of the electrolyte to further promote the stability of 2D Bi2Se3-nanosheet-based electronic devices.

Funder

NSFC

Innovation Talent Program of Jiangsu Province

Postdoctoral Science Foundation of China

the Fundamental Research Funds for the Central Universities

Jiangsu Funding Program for Excellent Postdoctoral Talent

Postdoctoral Research Start-up Funding of Southeast University

Publisher

MDPI AG

Subject

General Materials Science,General Chemical Engineering

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