Chemical vapor deposition growth of continuous monolayer antiferromagnetic CrOCl films

Fuente: arXiv
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Autori principali: Chen, Chao, Liu, Yulu, Lu, Hongyan, Wang, Zihao, Zheng, Bowen, Guo, Qian, Xiao, Jingkuan, Wang, Ping, Xu, Wanting, Han, Yulin, Chen, Mingxuan, Cai, Xiaofan, Huang, Jiabei, Han, Yaqing, Zhang, Di, Du, Renjun, Mayorov, Alexander S., Li, Ziying, Zhang, Shuai, Huang, Yi, Cheng, Tingting, Chen, Zhaolong, Liu, Ronghua, Tang, Nujiang, Ni, Haibo, Wu, Di, Gao, Libo, Xi, Xiaoxiang, Wang, Qianghua, Wang, Lei, Novoselov, Kostya S., Yu, Geliang
Natura: Preprint
Pubblicazione: 2025
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author Chen, Chao
Liu, Yulu
Lu, Hongyan
Wang, Zihao
Zheng, Bowen
Guo, Qian
Xiao, Jingkuan
Wang, Ping
Xu, Wanting
Han, Yulin
Chen, Mingxuan
Cai, Xiaofan
Huang, Jiabei
Han, Yaqing
Zhang, Di
Du, Renjun
Mayorov, Alexander S.
Li, Ziying
Zhang, Shuai
Huang, Yi
Cheng, Tingting
Chen, Zhaolong
Liu, Ronghua
Tang, Nujiang
Ni, Haibo
Wu, Di
Gao, Libo
Xi, Xiaoxiang
Wang, Qianghua
Wang, Lei
Novoselov, Kostya S.
Yu, Geliang
author_facet Chen, Chao
Liu, Yulu
Lu, Hongyan
Wang, Zihao
Zheng, Bowen
Guo, Qian
Xiao, Jingkuan
Wang, Ping
Xu, Wanting
Han, Yulin
Chen, Mingxuan
Cai, Xiaofan
Huang, Jiabei
Han, Yaqing
Zhang, Di
Du, Renjun
Mayorov, Alexander S.
Li, Ziying
Zhang, Shuai
Huang, Yi
Cheng, Tingting
Chen, Zhaolong
Liu, Ronghua
Tang, Nujiang
Ni, Haibo
Wu, Di
Gao, Libo
Xi, Xiaoxiang
Wang, Qianghua
Wang, Lei
Novoselov, Kostya S.
Yu, Geliang
contents The discovery of two-dimensional magnetic materials has provided an ideal platform for exploring physical phenomena in the two-dimensional limit. However, intrinsic two-dimensional antiferromagnetic materials have been rarely reported, limiting systematic studies of their electronic properties. The discovery of novel intrinsic two-dimensional antiferromagnets and the development of robust synthesis strategies, therefore, remain significant challenges. Here, we report the chemical vapor deposition synthesis of CrOCl monolayer films and nanosheets that exhibit excellent air stability. The CrOCl morphology is tunable, ranging from two-dimensional nanosheets to three-dimensional flower-like structures, with lateral sizes ranging from several microns to continuous monolayer films. Structural characterization confirms the materials composition and high crystalline quality. Furthermore, magnetic measurements, supported by theoretical calculations, reveal a Néel temperature for CrOCl of ~14 K. This work provides a reliable route for preparing two-dimensional antiferromagnetic materials.
format Preprint
id arxiv_https___arxiv_org_abs_2511_14189
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Chemical vapor deposition growth of continuous monolayer antiferromagnetic CrOCl films
Chen, Chao
Liu, Yulu
Lu, Hongyan
Wang, Zihao
Zheng, Bowen
Guo, Qian
Xiao, Jingkuan
Wang, Ping
Xu, Wanting
Han, Yulin
Chen, Mingxuan
Cai, Xiaofan
Huang, Jiabei
Han, Yaqing
Zhang, Di
Du, Renjun
Mayorov, Alexander S.
Li, Ziying
Zhang, Shuai
Huang, Yi
Cheng, Tingting
Chen, Zhaolong
Liu, Ronghua
Tang, Nujiang
Ni, Haibo
Wu, Di
Gao, Libo
Xi, Xiaoxiang
Wang, Qianghua
Wang, Lei
Novoselov, Kostya S.
Yu, Geliang
Mesoscale and Nanoscale Physics
The discovery of two-dimensional magnetic materials has provided an ideal platform for exploring physical phenomena in the two-dimensional limit. However, intrinsic two-dimensional antiferromagnetic materials have been rarely reported, limiting systematic studies of their electronic properties. The discovery of novel intrinsic two-dimensional antiferromagnets and the development of robust synthesis strategies, therefore, remain significant challenges. Here, we report the chemical vapor deposition synthesis of CrOCl monolayer films and nanosheets that exhibit excellent air stability. The CrOCl morphology is tunable, ranging from two-dimensional nanosheets to three-dimensional flower-like structures, with lateral sizes ranging from several microns to continuous monolayer films. Structural characterization confirms the materials composition and high crystalline quality. Furthermore, magnetic measurements, supported by theoretical calculations, reveal a Néel temperature for CrOCl of ~14 K. This work provides a reliable route for preparing two-dimensional antiferromagnetic materials.
title Chemical vapor deposition growth of continuous monolayer antiferromagnetic CrOCl films
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2511.14189