(1)中国科学院,先导专项B类,极限晶粒金属的制备及其缺陷和晶格行为,2023-09至2028-08,项目负责人。
(2)科学技术部,国家重点研发计划,极小尺寸结构的设计及制备技术研究,2024-12至2029-11,课题负责人。
(3)国家自然科学基金委,面上项目,极小尺寸纳米晶镍的结构转变及增塑机理研究,2024-01至2027-12,项目负责人。
(4)国家自然科学基金委,联合基金重点项目,金属铀表面微纳结构设计、调控及耐蚀性能研究,2023-01至2026-12, 课题负责人。
极小晶粒尺寸纳米金属的制备及微观结构研究
[1] Y.W. Qi, Z.P. Luo*, B. Zhang, X.Y. Li*, Plastic deformation induced strong and stable nanograined face-centered cubic Co, Acta Materialia 286 (2025) 120691.
[2] B. Zhang, Z.P. Luo*, X.Y. Li, Slow precipitate coarsening kinetics in extremely fine nanograined Ni-Cr alloys, Acta Materialia 274 (2024) 119984.
[3] H. Guan, H. Xie, Z.P. Luo, W.K. Bao, Z.S. You, Z.H. Jin, H.J. Jin*, Ultrastrong spinodoid alloys enabled by electrochemical dealloying and refilling, PNAS 120 (2023) e2214773120.
[4] X.K. Guo, H.L. Dong, Z.P. Luo*, B. Chen, X.Y. Li, High pressure suppressing grain boundary migration in a nanograined nickel, Scripta Materialia 214 (2022) 114656.
[5] Y.A. Sun, Z.P. Luo, X.Y. Li*, K. Lu, Effects of stacking fault energy on deformation induced grain boundary relaxation in nanograined Cu alloys, Acta Materialia 239 (2022) 118256.
[6] W. Yang, Z.P. Luo, W.K. Bao, H. Xie, Z.S. You, H.J. Jin*, Light, strong, and stable nanoporous aluminum with native oxide shell, Science Advances 7 (2021) eabb9471.
[7] Z.P. Luo, X.K. Guo, J.X. Hou, X. Zhou, X.Y. Li*, K. Lu*, Plastic deformation induced hexagonal-close-packed nickel nano-grains, Scripta Materialia 168 (2019) 67-70.
[8] Z.P. Luo, G.P. Zhang, R. Schwaiger*, Microstructural vortex formation during cyclic sliding of Cu/Au multilayers. Scripta Materialia 107 (2015) 67-70.
[9] Z.P. Luo, O.V. Mishin*, Y.B. Zhang, H.W. Zhang, K. Lu, Microstructural characterization of nickel subjected to dynamic plastic deformation. Scripta Materialia 66 (2012) 335-338.
[10] Z.P. Luo, H.W. Zhang*, N. Hansen, K. Lu, Quantification of the microstructures of high purity nickel subjected to dynamic plastic deformation. Acta Materialia 60 (2012) 1322-1333.
中国科学院杰出科技成就奖基础研究奖,2024
中国科学院院金属研究所引进优秀学者,2016
材料学
毕业生就业去向:宁波大学副教授;比亚迪中央研究院;