English

Electric Field Effect in Multilayer Cr2Ge2Te6: a Ferromagnetic Two-Dimensional Material

Materials Science 2017-05-23 v1 Mesoscale and Nanoscale Physics

Abstract

The emergence of two-dimensional (2D) materials has attracted a great deal of attention due to their fascinating physical properties and potential applications for future nanoelectronic devices. Since the first isolation of graphene, a Dirac material, a large family of new functional 2D materials have been discovered and characterized, including insulating 2D boron nitride, semiconducting 2D transition metal dichalcogenides and black phosphorus, and superconducting 2D bismuth strontium calcium copper oxide, molybdenum disulphide and niobium selenide, etc. Here, we report the identification of ferromagnetic thin flakes of Cr2Ge2Te6 (CGT) with thickness down to a few nanometers, which provides a very important piece to the van der Waals structures consisting of various 2D materials. We further demonstrate the giant modulation of the channel resistance of 2D CGT devices via electric field effect. Our results illustrate the gate voltage tunability of 2D CGT and the potential of CGT, a ferromagnetic 2D material, as a new functional quantum material for applications in future nanoelectronics and spintronics.

Keywords

Cite

@article{arxiv.1704.08862,
  title  = {Electric Field Effect in Multilayer Cr2Ge2Te6: a Ferromagnetic Two-Dimensional Material},
  author = {Wenyu Xing and Yangyang Chen and Patrick M. Odenthal and Xiao Zhang and Wei Yuan and Tang Su and Qi Song and Tianyu Wang and Jiangnan Zhong and Shuang Jia and X. C. Xie and Yan Li and Wei Han},
  journal= {arXiv preprint arXiv:1704.08862},
  year   = {2017}
}

Comments

To appear in 2D Materials

R2 v1 2026-06-22T19:30:40.328Z