Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research interests include Graphene research and applications, 2D Materials and Applications, Molecular Junctions and Nanostructures, and Quantum and electron transport phenomena.
Unraveling structure–performance relationships: tailored d-band centers in monolayer MSi<sub>2</sub>N<sub>4</sub> and MoSi<sub>2</sub>Z<sub>4</sub> by atomic substitution
Study on spin-dependent thermoelectric transport properties of graphene nanoribbon molecular devices modulated by DNA bases adsorption
Gate-Voltage modulated spin caloritronics in Fe/Cr-doped Janus MoSeTe nanoribbons
Utilizing the Built-In Electric Field of SnS<sub>2</sub>/C<sub>3</sub>N Heterostructure to Promote High-Performance Lithium-Ion Batteries
Interlayer coupling modulated for thermoelectric transport characterization of black arsenic nanoscale devices
Positional Isomerism of Aromatic Heterocyclic Spacer Cations in Two-Dimensional Dion–Jacobson Hybrid Perovskites
High Thermoelectric Properties Induced in Double-Layer Black Arsenene via Decoupling Thermoelectric Coefficients
Dust Condensation of SiC, SiO in Asymptotic Giant Branch Stellar Winds-SiC Spectrum
Modulating the electronic transport properties of zigzag phosphorene nanoribbons through the coupling with the chromium triiodide molecules
First-principles study of phase-dependent carrier transport mechanism for MASnI<sub>3</sub> Sn-based halide perovskite
Regulation of desolvation process and dense electrocrystalization behavior for stable Zn metal anode
Realization of high thermoelectric performance of black phosphorus / black arsenic hybrid heterojunction nanoscale devices by interface engineering
Edge passivation oxidation-enhanced spin caloritronics in zigzag blue phosphorus nanoribbons
Mechanisms of adsorption and diffusion of Na on a VSe<sub>2</sub>monolayer with engineering-induced vacancies
Stacking Order-Dependent Electronic, Optical, and Charge Transport Properties of van der Waals GaS/WXY (X/Y = S, Se, Te) Heterostructures
Realization of High Thermoelectric Performance Of Black Phosphorus / Black Arsenic Hybrid Heterojunction Nanoscale Devices by Interface Engineering
Modulation of Optical Properties by Interlayer Antiferromagnetic Resonance in Bilayer CrSBr
Multifunctional 2D g-C<sub>4</sub>N<sub>3</sub>/MoS<sub>2</sub> vdW Heterostructure-Based Nanodevices: Spin Filtering and Gas Sensing Properties
Stacking order effects on the electronic and optical properties of GaS/XMoY (X/Y = S, Se, Te) Van der Waals heterostructures: a first-principles study
Magnetothermoelectric properties of Al-Porphyrin sandwiched by graphene nanoribbon electrode based on quantum interference
Surface‐Preferred Crystal Plane for a Stable and Reversible Zinc Anode
Effects of interface charge-transfer doping on thermoelectric transport properties of black phosphorene-F4TCNQ nanoscale devices
One-pot synthesis of flower-like SnS2/SnO2 heterojunction with enhanced visible light photocatalytic performance
Significantly enhanced thermoelectric performance in intermediate weak-coupling C<sub>8</sub>-BTBT molecular junctions with p/n-type electrode doping
Modulation of thermoelectric performance of Cn-BTBT molecular junctions by engineering contact geometry
First-principles study on photoelectric and transport properties of CsXBr3 (X = Ge, Sn) and blue phosphorus van der Waals heterojunctions
Strain Investigation on Spin-Dependent Transport Properties of γ-Graphyne Nanoribbon Between Gold Electrodes
First-principles investigations on a two-dimensional S <sub>3</sub> N <sub>2</sub> /black phosphorene van der Waals heterostructure: mechanical, carrier transport and thermoelectric anisotropy
Half-metallicity and enhanced magnetism in monolayer T-CrTe2 by lithium adsorption
Strain modulation on the spin transport properties of PTB junctions with MoC<sub>2</sub> electrodes