Yangfan Yi
Overview
Explore the profile of Yangfan Yi including associated specialties, affiliations and a list of published articles.
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Articles
6
Citations
239
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0
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Recent Articles
1.
Wu S, Fei Z, Sun Z, Yi Y, Xia W, Yan D, et al.
ACS Nano
. 2023 Sep;
17(19):18905-18913.
PMID: 37767802
Topological properties in quantum materials are often governed by symmetry and tuned by crystal structure and external fields, and hence, symmetry-sensitive nonlinear optical measurements in a magnetic field are a...
2.
Huang D, Jiang T, Yi Y, Shan Y, Li Y, Zhang Z, et al.
Opt Lett
. 2022 Jan;
47(2):234-237.
PMID: 35030575
Gapless Dirac fermions in monolayer graphene give rise to an abundance of peculiar physical properties, including exceptional broadband nonlinear optical responses. By tuning the chemical potential, stacking order, and photonic...
3.
Spin mapping of intralayer antiferromagnetism and field-induced spin reorientation in monolayer CrTe
Xian J, Wang C, Nie J, Li R, Han M, Lin J, et al.
Nat Commun
. 2022 Jan;
13(1):257.
PMID: 35017510
Intrinsic antiferromagnetism in van der Waals (vdW) monolayer (ML) crystals enriches our understanding of two-dimensional (2D) magnetic orders and presents several advantages over ferromagnetism in spintronic applications. However, studies of...
4.
Sun Z, Yi Y, Song T, Clark G, Huang B, Shan Y, et al.
Nature
. 2019 Aug;
572(7770):497-501.
PMID: 31367036
Layered antiferromagnetism is the spatial arrangement of ferromagnetic layers with antiferromagnetic interlayer coupling. The van der Waals magnet chromium triiodide (CrI) has been shown to be a layered antiferromagnetic insulator...
5.
Li J, Hu Z, Yi Y, Yu M, Li X, Zhou J, et al.
Small
. 2019 Mar;
15(14):e1805188.
PMID: 30838789
Controllable synthesis of high-quality hexagonal boron nitride (h-BN) is desired toward the industrial application of 2D devices based on van der Waals heterostructures. Substantial efforts are devoted to synthesize h-BN...
6.
Deng Y, Yu Y, Song Y, Zhang J, Wang N, Sun Z, et al.
Nature
. 2018 Oct;
563(7729):94-99.
PMID: 30349002
Materials research has driven the development of modern nano-electronic devices. In particular, research in magnetic thin films has revolutionized the development of spintronic devices because identifying new magnetic materials is...