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Tailoring atomic 1T phase CrTe2for in situ fabrication

  • Chaolun Wang
  • , Qiran Zou
  • , Zhiheng Cheng
  • , Jietao Chen
  • , Chen Luo
  • , Fang Liang
  • , Chunhua Cai
  • , Hengchang Bi
  • , Xiaocong Lian
  • , Xiangyang Ji
  • , Qiubo Zhang
  • , Litao Sun
  • , Xing Wu*
  • *此作品的通讯作者

科研成果: 期刊稿件文章同行评审

摘要

Controllable tailoring and understanding the phase-structure relationship of the 1T phase two-dimensional (2D) materials are critical for their applications in nanodevices. The in situ transmission electron microscope (TEM) could regulate and monitor the evolution process of the nanostructure of 2D material with atomic resolution. In this work, a controllably tailoring 1T-CrTe2 nanopore is carried out by the in situ TEM. A preferred formation of the 1T-CrTe2 border structure and nanopore healing process are studied at the atomic scale. The controllable tailoring of the 1T phase nanopore could be achieved by regulating the transformation of two types of low indices of crystal faces {1010} and {1120} at the nanopore border. Machine learning is applied to automatically process the TEM images with high efficiency. By adopting the deep-learning-based image segmentation method and augmenting the TEM images specifically, the nanopore of the TEM image could be automatically identified and the evaluation result of DICE metric reaches 93.17% on test set. This work presents the unique structure evolution of 1T phase 2D material and the computer aided high efficiency TEM data analysis based on deep learning. The techniques applied in this work could be generalized to other materials for controlled nanostructure regulation and automatic TEM image analyzation.

源语言英语
文章编号085302
期刊Nanotechnology
33
8
DOI
出版状态已出版 - 19 2月 2022

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