114 citations · 115 across the 2 of their papers we have counts for
6 papers
Discovery of a metallic oxide with ultralow thermal conductivity
Jianhong Dai, Zhehong Liu, Jialin Ji +10
A compound with metallic electrical conductivity usually has a considerable total thermal conductivity because both electrons and photons contribute to thermal transport. Here, we…
Voting Data-Driven Regression Learning for Discovery of Functional Materials and Applications to Two-Dimensional Ferroelectric Materials
Xing-Yu Ma, Hou-Yi Lyu, Xue-Juan Dong +4
Regression machine learning is widely applied to predict various materials. However, insufficient materials data usually leads to a poor performance. Here, we develop a new voting…
Electric field induced topological phase transition and large enhancements of spin-orbit coupling and Curie temperature in two-dimensional ferromagnetic semiconductors
Jing-Yang You, Xue-Juan Dong, Bo Gu +1
Tuning topological and magnetic properties of materials by applying an electric field is widely used in spintronics. In this work, we find a topological phase transition from topol…
Great enhancement of Curie temperature and magnetic anisotropy in two-dimensional van der Waals magnetic semiconductor heterostructures
Xuejuan-Dong, Jingyang-You, Zheng Zhang +2
In two-dimensional (2D) magnetic systems, large magnetic anisotropy is needed to stabilize the magnetic order according to Mermin-Wagner theorem. Based on density functional theory…
Two-dimensional magnetic semiconductors with room Curie temperatures
Jing-Yang You, Zhen Zhang, Xue-Juan Dong +2
We propose two-dimensional (2D) Ising-type ferromagnetic semiconductors TcSiTe3, TcGeSe3, and TcGeTe3 with high Curie temperatures around 200-0500 K. Owing to large spin-orbit coup…
Strain-Induced Room-Temperature Ferromagnetic Semiconductors with Large Anomalous Hall Conductivity in Two-Dimensional Cr2Ge2Se6
Xue-Juan Dong, Jing-Yang You, Bo Gu +1
By density functional theory calculations, we predict a stable two-dimensional (2D) ferromagnetic semiconductor CrGeSe, where the Curie temperature can be drama…