We study the electrical, optical, magnetic, and mechanical properties of materials to find potential applications in the area of nanoelectronics, optoelectonics, information storage, and energy storage.
(1)Design or predict Dirac materials based on symmetry.
(2)Interface engineering: 1D and 2D interface investigation (Heterostructure)
(3)Polarization engineering: spin polarization (ferromagnetism), electric polarization (ferroelectricity) and strain-electric coupling (piezoelectric polarization)
(4)Surface engineering: energy storage materials such as prediction materials for Li-battery
In addition, we cooperate extensively with experiments in the research field of perovskite, photocatalyst, electrocatalyst, Li-S battery, and so on.
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