19 results on '"Nie, Yihan"'
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2. Mechanical properties of polymer nanocomposites with randomly dispersed and cross-linked two-dimensional diamond
3. Glass transition temperature of asphalt binder based on atomistic scale simulation.
4. Supergravity‐Steered Generic Manufacturing of Nanosheets‐Embedded Nanocomposite Hydrogel with Highly Oriented, Heterogeneous Architecture.
5. Single layer diamond - A new ultrathin 2D carbon nanostructure for mechanical resonator
6. Resolving the dynamic properties of entangled linear polymers in non-equilibrium coarse grain simulation with a priori scaling factors.
7. Ferroelectric Domain and Switching Dynamics in Curved In2Se3: First-Principles and Deep Learning Molecular Dynamics Simulations.
8. Effect of nonaffine displacement on the mechanical performance of degraded PCL and its graphene composites: an atomistic investigation.
9. Density Functional Theory Calculations of the Stacking-Dependent Optoelectronic Properties of 2D GeSe/SnS Heterobilayers: Implications for Photovoltaics.
10. Atomistic Insights on the Rheological Property of Polycaprolactone Composites with the Addition of Graphene.
11. Thermal Transport in 3D Nanostructures.
12. Role of Nitrogen on the Mechanical Properties of the Novel Carbon Nitride Nanothreads.
13. How Gaseous Environment Influences a Carbon Nanotube-Based Mechanical Resonator.
14. General existence of flexural mode doublets in nanowires targeting vectorial sensing applications.
15. First-Principles Prediction of a Room-Temperature Ferromagnetic Janus VSSe Monolayer with Piezoelectricity, Ferroelasticity, and Large Valley Polarization.
16. Ferroelectric Domain and Switching Dynamics in Curved In 2 Se 3 : First-Principles and Deep Learning Molecular Dynamics Simulations.
17. Correction to Exceptional Deformability of Wurtzite Zinc Oxide Nanowires with Growth Axial Stacking Faults.
18. Exceptional Deformability of Wurtzite Zinc Oxide Nanowires with Growth Axial Stacking Faults.
19. Effect of Fe-doping on bending elastic properties of single-crystalline rutile TiO 2 nanowires.
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