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Air-Stable and Layer-Dependent Ferromagnetism in Atomically Thin van der Waals CrPS4

Cited 31 time in Web of Science Cited 33 time in Scopus
Authors

Son, Joolee; Son, Suhan; Park, Pyeongjae; Kim, Maengsuk; Tao, Zui; Oh, Juhyun; Lee, Taehyeon; Lee, Sanghyun; Kim, Junghyun; Zhang, Kaixuan; Cho, Kwanghee; Kamiyama, Takashi; Lee, Jun Hee; Mak, Kin Fai; Shan, Jie; Kim, Miyoung; Park, Je-Geun; Lee, Jieun

Issue Date
2021-10
Publisher
American Chemical Society
Citation
ACS Nano, Vol.15 No.10, pp.16904-16912
Abstract
Ferromagnetism in two-dimensional materials presents a promising platform for the development of ultrathin spintronic devices with advanced functionalities. Recently discovered ferromagnetic van der Waals crystals such as CrI3, readily isolated two-dimensional crystals, are highly tunable through external fields or structural modifications. However, there remains a challenge because of material instability under air exposure. Here, we report the observation of an air-stable and layer-dependent ferromagnetic (FM) van der Waals crystal, CrPS4, using magneto-optic Kerr effect microscopy. In contrast to the antiferromagnetic (AFM) bulk, the FM out-of-plane spin orientation is found in the monolayer crystal. Furthermore, alternating AFM and FM properties observed in even and odd layers suggest robust antiferromagnetic exchange interactions between layers. The observed ferromagnetism in these crystals remains resilient even after the air exposure of about a day, providing possibilities for the practical applications of van der Waals spintronics.
ISSN
1936-0851
URI
https://hdl.handle.net/10371/201867
DOI
https://doi.org/10.1021/acsnano.1c07860
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  • College of Natural Sciences
  • Department of Physics and Astronomy
Research Area Condensed Matter Physics, Nanoscale Physics and Photonics, 나노 물리와 나노 광자학, 응집 물질 물리

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