Research

1. Growth and Etching Dynamics of Low-dimensional Materials

Competitive growth and etching dynamics of graphene

Explore the competitive growth and etching dynamics of low-dimensional materials through both theoretical analysis and computational simulations. Experimental phenomenon during the synthesis process has been investigated, which promotes the optimization of both quality and efficiency of as-grown products.

Selected Papers: Carbon 141, 316-322 (2019); NSR, nwaa298 (2020); 2D Mater, 9, 015004 (2022)

2. Single-Particle Irradiation Effect in Low-dimensional Materials and Structures

Charge/energy exchange and deposition effect in graphene

Explore the single-particle irradiation effect in the low-dimensional materials and structures through multi-scale simulation methods. Specifically, I worked on the electronic excitation and current response of graphene-based FETs under proton irradiation.

Selected Papers: Small Science 3(7), 2300011 (2024); Nanotechnology 32(16), 165702 (2021); JAP 126(12), 125902 (2019)