Sisheng Duan
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Explore the profile of Sisheng Duan including associated specialties, affiliations and a list of published articles.
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Articles
8
Citations
18
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Recent Articles
1.
Huang Y, Huang Y, Yang K, Yang J, Duan S, Wang Y, et al.
Angew Chem Int Ed Engl
. 2025 Feb;
:e202425185.
PMID: 39908137
The synthesis of atomically precise carbon nanostructures in ultra-high vacuum has seen extensive progress on metal surfaces. However, this remains challenging on chemically inert surfaces. It is because the thermally...
2.
Sun S, You J, Cai Z, Su J, Yang T, Peng X, et al.
Adv Mater
. 2024 Dec;
37(5):e2411182.
PMID: 39659109
Materials with flat bands can serve as a promising platform to investigate strongly interacting phenomena. However, experimental realization of ideal flat bands is mostly limited to artificial lattices or moiré...
3.
Duan S, You J, Cai Z, Gou J, Li D, Huang Y, et al.
Nat Commun
. 2024 Oct;
15(1):8940.
PMID: 39414826
The kagome lattice is a versatile platform for investigating correlated electronic states. However, its realization in two-dimensional (2D) semiconductors for tunable device applications is still challenging. An alternative strategy to...
4.
Wang Y, Li D, Duan S, Sun S, Ding Y, Bussolotti F, et al.
Adv Mater
. 2024 Jul;
36(36):e2404341.
PMID: 39030759
Structural topology and symmetry of a two-dimensional (2D) network play pivotal roles in defining its electrical properties and functionalities. Here, a binary buckled honeycomb lattice with C symmetry, which naturally...
5.
Gou J, Bai H, Zhang X, Huang Y, Duan S, Ariando A, et al.
Nature
. 2023 Apr;
617(7959):67-72.
PMID: 37020017
Ferroelectric materials are fascinating for their non-volatile switchable electric polarizations induced by the spontaneous inversion-symmetry breaking. However, in all of the conventional ferroelectric compounds, at least two constituent ions are...
6.
Duan S, You J, Gou J, Chen J, Huang Y, Liu M, et al.
ACS Nano
. 2022 Nov;
16(12):21079-21086.
PMID: 36383161
The kagome lattice has attracted intense interest with the promise of realizing topological phases built from strongly interacting electrons. However, fabricating two-dimensional (2D) kagome materials with nontrivial topology is still...
7.
Sun S, You J, Duan S, Gou J, Luo Y, Lin W, et al.
ACS Nano
. 2021 Dec;
16(1):1436-1443.
PMID: 34918901
Quantum spin Hall (QSH) systems hold promises of low-power-consuming spintronic devices, yet their practical applications are extremely impeded by the small energy gaps. Fabricating QSH materials with large gaps, especially...
8.
Liu M, Huang Y, Gou J, Liang Q, Chua R, Arramel , et al.
J Phys Chem Lett
. 2021 Aug;
12(32):7752-7760.
PMID: 34369783
Thickness-dependent magnetic behavior has previously been observed in chemical vapor deposition-grown chromium selenide. However, the low-dimensional structure in nonlayered chromium selenide, which plays a crucial role in determining the low-dimensional...
9.
Sun S, Yang T, Luo Y, Gou J, Huang Y, Gu C, et al.
J Phys Chem Lett
. 2020 Oct;
11(21):8976-8982.
PMID: 33035053
The degree of buckling of two-dimensional (2D) materials can have a dramatic impact on their corresponding electronic structures. Antimonene (β-phase), a new 2D material with air stability and promising electronic...