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cond-mat.mtrl-sci2025

Kinetically accessible 1D magnetic chains of transition-metal chalcogenides and halides on van der Waals surfaces

Canbo Zong, Deping Guo, Renhong Wang +9

One-dimensional (1D) chains offer unique opportunities for nanoelectronics and spintronics, yet their experimental realization remains challenging because 1D motifs are often therm…

cond-mat.mtrl-sci2025

Mechanically and electrically switchable triferroic altermagnet in a pentagonal FeO2 monolayer

Deping Guo, Jiaqi Dai, Renhong Wang +2

Two-dimensional multiferroics promise low-power, multifunctional devices, yet the intrinsic coexistence and mutual control of three coupled ferroic orders in a single layer remains…

cond-mat.mtrl-sci2025

Two-dimensional Kagome Materials: Theoretical Insights, Experimental Realizations, and Electronic Structures

Zhongqin Zhang, Jiaqi Dai, Cong Wang +4

In recent years, kagome materials have attracted significant attention due to their rich emergent phenomena arising from the quantum interplay of geometry, topology, spin, and corr…

cond-mat.mtrl-sci2024

Layered semiconducting electrides in p-block metal oxides

Jiaqi Dai, Feng Yang, Cong Wang +3

In conventional electrides, excess electrons are localized in crystal voids to serve as anions. Most of these electrides are metallic and the metal cations are primarily from the s…

cond-mat.mtrl-sci2024

Kagome bands and magnetism in MoTe kagome monolayers

Jiaqi Dai, Zhongqin Zhang, Zemin Pan +4

Kagome lattices facilitate various quantum phases, yet in bulk materials, their kagome flat-bands often interact with bulk bands, suppressing kagome electronic characteristics for…

cond-mat.mtrl-sci2024

Ferromagnetism and correlated insulating states in monolayer Mo33Te56

Zemin Pan, Wenqi Xiong, Jiaqi Dai +17

Kagome lattices have an inherent two-dimensional nature. Despite previous realizations in the monolayer limit, their abilities to drive emergent electronic states such as correlate…