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[11]11. Evaluating surface damage behavior of W-(Y0.9La0.1)2O3 composites during spark plasma sintering process improvement, 第一作者(共同); J. Nucl. Mater., 2022, 558: 153322.
[12]12. Excellent performance of W-Y2O3 composite via powder process improvement and Y2O3 refinement, Mater. & Design, 第一作者(共同); 2021, 212: 110249.
[13]13. Pressure Dependence of Structural and Mechanical Properties of Single-Crystal Tungsten: A Molecular Dynamics Study; Metals, 第一作者; 2021, 11, 1898.
[14]14. Structural evolution and fusion behavior of gold supercrystals under stress: Insights from atomistic simulations; Journal of Applied Physics; 第一作者; 2020, 128:035109.
[15]15. Molecular insights into the thermal stability of gold superlattices; Nanotechnology; 第一作者; 2020, 31:085704.
[16]16. Temperature-dependent surface density of alkylthiol monolayers on gold nanocrystals; 第一作者; Materials Research Express, 2018, 5:035001.
[17]17. Growth of curved crystals: competition between topological defect nucleation and boundary branching; Soft Matter; 第一作者(共同); 2019, 15:4391.
[18]18. Interaction between capped tetrahedral gold nanocrystals: dependence on effective softness; Soft Matter; 第一作者; 2019, 15:8392.
[19]19. Molecular interaction between asymmetric ligand-capped gold nanocrystals; Journal of Chemical Physics; 第一作者; 2019, 150:034702.
[20]20. Ligand coverage dependence of structural stability and interparticle spacing of gold supracrystals; Journal of Applied Physics; 第一作者; 2018, 123:045101.
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