简介:
2011年 中南大学应用物理专业 理学学士学位。
2016年 中国科学院物理研究所 理学博士学位。
2016年-2017 年 日本东北大学材料科学高等研究所 (AIMR) 访问学者。
2017 年-2020 年 日本产业技术综合研究所(AIST)博士后。
2020 年加入中国科学院物理研究所怀柔研究部,任特聘研究员,博导。主持项目包括:科技部重点研发计划青年科学家项目、基金委重大项目(课题)、面上项目等。
主要研究方向:
1. 先进合金高通量制备及结构调控;
2. 先进合金微纳结构设计及功能特性研究;
3. 新型功能合金开发及应用研究。
过去的主要工作及获得的成果:
本人长期从事非晶合金、高熵合金和纳米多孔合金等先进合金的材料开发、性能调控及机理研究,系统开展了先进合金高通量制备与快速筛选、异质结构调控及机理研究、实用化先进合金材料开发三方面工作,建立了覆盖块体和薄膜组合材料库、高效微纳结构构筑及性能快速评价方法,发展了多种非晶/纳晶异质结构调控方法,开发出系列高性能先进合金材料,为先进合金的高效发现和应用转化提供了支撑。发表学术论文50余篇,包括Nature、Physical Review Letter、Nature communications、Advanced Functional Materials、Acta Materialia、Advanced Science、Small等。
代表性论文及专利:
一、先进合金结构、动力学及相转变研究
20. Z. Y. Cheng, W. G. Lin, Y. T. Sun*, J. Li, D. Xiao, L. Q. Shen, Z. Lu*, W. H. Wang*. DNA-templated synthesis of amorphous silver nanostructures via fivefold-symmetry-induced crystallization suppression. Materials Futures. 5, 015002 (2026).
19. W. Wang, R. Zhao, R. Han, Y. H. Shang, Y. Yang, S. Liu, S. Zhang, Y. C. Hu, Y. Sun, M. X. Li, L. Shi, K. F. Yao, J. Ma, H. Ke, Y. Zhao, B. Zhang, X. Tong, H. Y. Bai, S. Liu, Z. Wu, S. Lan, Q. Cheng, J. Zhou, H. Kang, P. Guan, Z. Wu, H. Zhang, P. Luo, L. Shen, H. B. Yu, S. Meng, Z. Wang, H. Peng, S. Ren, Y. Tong, L. Song, J. Huo, J. Wang, J. L. Ren, P. Wang, M. Li, B. Fan, B. Huang, J. Yi, X. Bian, Q. Wang, G. Wang, M. Jiang, Y. X. Wang, Z. Zhu, H. Zhang, C. K. Zhou, M. Liu, S. Zhao, J. Zhou, X. Li, B. Sun, Z. Lu, S. Pang, H. Y. Li, H. Lin, J. Wang, X. S. Wang, Y. Shen, C. R. Cao, B. .. Z. Tang, P. Yu. Metallic glass roadmap. Materials Futures. 4, 033001 (2025).
18. Y. Huang, R. Zhao, S. Weng, X. Liu, Y. Fu, C. C. Chang, L. Ouyang, J. Yu, Y. Liang, X. Luo, J. Cao, B. Sun, X. Wang, A. Wang*, C. Shi*, Z. Lu*, H. Y. Bai*. Extra Phase Dynamics Hidden under Dynamics Relaxation Spectra of Amorphous Alloys. The Journal of Physical Chemistry Letters. 16, 11414-11420 (2025).
17. X. J. Peng, Z. Lu*, H. Y. Bai*. Affable thermal treatment process to overcome the trade-off relation via interface engineering in an Fe-based amorphous film. Applied Physics Letters. 122, 242406 (2023).
16. R. Zhao, L. Shen*, D. Xiao, C. C. Chang, Y. Huang, J. Yu, H. Zhang, M. Liu, S. Zhao, W. Yao, Z. Lu, B. Sun, H. Y. Bai*, Z. Zou, M. Yang, W. Wang. Diverse glasses revealed from Chang’E-5 lunar regolith. National Science Review. 10, nwad079 (2023).
15. Y. Huang, S. Weng, H. Jiang, Z. Liu, X. Liu, Y. Wang, L. Shen, B. Sun, Y. Fu, Z. Wang, Y. Sun, B. Sun, Z. Lu, X. Wang, H. Y. Bai*. Ultralarge-scale anomalous phase separation discovered in a Cr-Fe-Co-Ni-Zr high-entropy metallic glass system. Science China Materials. 66, 335-342 (2023).
14. J. Shen, H. Zhang, Z. Q. Chen, L. Ouyang, F. .. R. Wang, Z. Lu, M. Z. Li, Y. Sun*, H. Y. Bai, W. Wang*. The kinetics of reentrant glass transition in metallic liquids. Acta Materialia. 244, 118554 (2023).
13. J. Jiang, Z. Lu, J. Shen, T. Wada, H. Kato*, M. Chen. Decoupling between calorimetric and dynamical glass transitions in high-entropy metallic glasses. Nature Communications. 12, 3843 (2021).
12. P. Luo*, F. Zhu, Y. M. Lv, Z. Lu, L. Shen, R. Zhao, Y. Sun, G. Vaughan, M. D. Michiel, B. Ruta, H. Y. Bai*, W. Wang. Microscopic Structural Evolution during Ultrastable Metallic Glass Formation. ACS Applied Materials & Interfaces. 13, 40098-40105 (2021).
11. F. Zhang, Y. Ren, Z. Yang, H. Su, Z. Lu, C. Tan*, H. Peng, K. Watanabe, B. Li, M. Barnett, M. Chen*. The interaction of deformation twins with long-period stacking ordered precipitates in a magnesium alloy subjected to shock loading. Acta Materialia. 188, 203-214 (2020).
10. J. Shen, Z. Lu, J. Q. Wang, S. Lan, F. Zhang, A. Hirata, M. Chen, X. L. Wang, P. Wen, Y. Sun*, H. Y. Bai*, W. H. Wang*. Metallic Glacial Glass Formation by a First-Order Liquid–Liquid Transition. The Journal of Physical Chemistry Letters. 11, 6718-6723 (2020).
9. M. Li, S. F. Zhao, Z. Lu, A. Hirata, P. Wen, H. Y. Bai, M. Chen, J. Schroers, Y. Liu*, W. Wang. High-temperature bulk metallic glasses developed by combinatorial methods. Nature. 569, 99-103 (2019).
8. Y. Tian, W. Jiao, P. Liu, S. Song*, Z. Lu, A. Hirata, M. Chen*. Fast coalescence of metallic glass nanoparticles. Nature Communications. 10, 5249 (2019).
7. Z. Lu, X. Yang, B. Sun, Y. Z. Li, K. Chen, W. H. Wang, H. Y. Bai*. Divergent strain acceleration effects in metallic glasses. Scripta Materialia. 130, 229-233 (2017).
6. L. Chen, C. Cao, J. Shi, Z. Lu, Y. Sun, P. Luo, L. Gu, H. Y. Bai, M. X. Pan*, W. H. Wang*. Fast Surface Dynamics of Metallic Glass Enable Superlatticelike Nanostructure Growth. Physical Review Letters. 118, 016101 (2017).
5. Y. Wu, B. Wang, Y. C. Hu, Z. Lu, Y. Z. Li, B. Shang, W. H. Wang, H. Y. Bai*, P. Guan*. The critical strain - A crossover from stochastic activation to percolation of flow units during stress relaxation in metallic glass. Scripta Materialia. 134, 75-79 (2017).
4. Z. Lu, B. Shang, Y. Sun, Z. Zhu, P. Guan, W. H. Wang, H. Y. Bai*. Revealing β-relaxation mechanism based on energy distribution of flow units in metallic glass. The Journal of Chemical Physics. 144, 144501 (2016).
3. Z. Lu, W. Wang, H. Y. Bai*. Classification of metallic glasses based on structural and dynamical heterogeneities by stress relaxation. Science China Materials. 58, 98-105 (2015).
2. S. V. Ketov, Y. Sun, S. Nachum, Z. Lu, A. Checchi, A. R. Beraldin, H. Y. Bai, W. H. Wang, D. V. Louzguine, M. A. Carpenter, A. L. Greer*. Rejuvenation of metallic glasses by non-affine thermal strain. Nature. 524, 200-203 (2015).
1. Z. Lu, W. Jiao, W. H. Wang, H. Y. Bai*. Flow Unit Perspective on Room Temperature Homogeneous Plastic Deformation in Metallic Glasses. Physical Review Letters. 113, 045501 (2014).
二、纳米多孔先进合金高效制备及结构演化行为
9. H. Shen, J. Jiang, M. Zhang, Z. Lu*, J. Han*. Homologous Temperature Regulated Hierarchical Nanoporous Structures by Dealloying. Small Methods. 9, 2400729 (2025).
8. X. Feng, M. Liu, J. Li, A. Zhang, J. Zhang, Y. Liang, Y. Zhang*, Z. Lu*, W. Wang. Binary ZnY porous materials through integrated high-throughput approach. Acta Materialia. 275, 120048 (2024).
7. M. Liu, X. Feng, Z. Lu*, Y. Zhang*. Fabrication of three-dimensional bicontinuous porous aluminum by vapor phase dealloying. Materials Today Communications. 40, 109875 (2024).
6. Y. Li, X. Han, Z. Lu, L. Ying, X. Wang, Y. Zeng, Y. Gao, Q. Chen, P. Liu*. Crystal plane-orientation dependent phase evolution from precursor to porous intermediate phase in the vapor phase dealloying of a Co-Zn alloy. Acta Materialia. 245, 118617 (2023).
5. Y. Xia, Z. Lu, J. Han, F. Zhang, D. Wei, K. Watanabe, M. Chen*. Bulk diffusion regulated nanopore formation during vapor phase dealloying of a Zn-Cu alloy. Acta Materialia. 238, 118210 (2022).
4. J. Han, H. Li, Z. Lu, G. Huang, I. Johnson, K. Watanabe, M. Chen*. 3D Bimodal Porous Amorphous Carbon with Self-Similar Porosity by Low-Temperature Sequential Chemical Dealloying. Chemistry of Materials. 33, 1013-1021 (2021).
3. Z. Lu, F. Zhang, D. Wei, J. Han, Y. Xia, J. Jiang, M. Zhong, A. Hirata, K. Watanabe, A. Karma*, J. Erlebacher*, M. Chen*. Vapor phase dealloying kinetics of MnZn alloys. Acta Materialia. 212, 116916 (2021).
2. J. Han, C. Li, Z. Lu, H. Wang, Z. Wang, K. Watanabe, M. Chen*. Vapor phase dealloying: A versatile approach for fabricating 3D porous materials. Acta Materialia. 163, 161-172 (2019).
1. Z. Lu, C. Li, J. Han, F. Zhang, P. Liu, H. Wang, Z. Wang, C. Cheng, L. Chen, A. Hirata, T. Fujita, J. Erlebacher, M. Chen*. Three-dimensional bicontinuous nanoporous materials by vapor phase dealloying. Nature Communications. 9, 276 (2018).
三、先进合金功能特性调控及应用研究
16. X. Chen, X. J. Peng, D. Xiao, Y. Sun, K. Zhou, X. Yang, Y. Z. Zhang*, W. Wang, Z. Lu*, H. Y. Bai*. High‐Efficiency Electrochemical Nitrogen Fixation by Noble‐Metal‐Free Metallic Glasses. Advanced Functional Materials. 36, e03400 (2026).
15. Q. Y. Zhao, Y. Liu, L. Hu, H. M. Duan, M. Li, Y. H. Liu, J. Jiang*, Z. Lu*, W. Wang. Chromatic‐Zone Mapping for Rapid Discovery of Antibacterial Alloys with Nanostructured Surfaces. Advanced Science. 13, e13454 (2026).
14. Z. Lei, L. Du, M. Zhang, L. Yang, T. Wada, J. Jiang*, J. Han*, Z. Lu*, H. Kato. Entropy-regulated nanocrystallization in PdPt-based metallic glasses for dual-phase HER catalysts. Journal of Alloys and Compounds. 1068, 188399 (2026).
13. A. Zhang, M. Liu, X. Feng, S. Liu, Y. Zhang, J. Huang, J. Ma, K. Zhou*, J. Liu, Z. Lu*, H. Wang. A hierarchical Cu(OH) 2 nanograss-decorated bimetallic nanoporous glucose sensor with an ultra-low detection limit. Journal of Materials Chemistry A. 13, 12534-12544 (2025).
12. M. Liu, S. Ning, D. Xiao, Y. Zhang, J. Han, C. Li, A. Nie, X. Zhang, A. Zhang, X. Feng, Y. Zhang*, W. Wang, Z. Lu*, H. Y. Bai*. Amorphous/crystalline heterostructured nanoporous high-entropy metallic glasses for efficient water splitting. Materials Futures. 4, 025303 (2025).
11. B. Qin, J. Cao, Z. Zhuang, R. Sun, F. Shen, J. Wang, B. Sun, Z. Lu*, W. Wang, H. Y. Bai*. Achieving superior soft magnetic and ductile performances in FeCo-based alloy via amorphous–nanocrystalline nested microstructure. Journal of Alloys and Compounds. 1035, 181534 (2025).
10. Y. Huang, S. Weng, Z. Liu, Z. Wang, J. Yu, Y. Wang, S. Zhang, P. Wen, X. Liu*, X. Wang*, Z. Lu*, H. Y. Bai*. Simple Realization of a Novel Metal–Metal Composite Solid Solution and Its Potential Application as a Current Collector. Small. 21, 2504301 (2025).
9. Q. Zhao, J. Wang, Y. Zhuang, L. Gong, W. N. Zhang, W. Fan*, Z. Lu, Y. Zhang*, T. Fujita, P. Zhang, Q. K. Xue. In situ reconstruction of Bi nanoparticles confined within 3D nanoporous Cu to boost CO2 electroreduction. Science China Materials. 67, 796-803 (2024).
8. Y. Wu, F. Wang, Y. Huang, F. Zheng, Y. Zeng, Z. Lu, S. Wang*, B. Sun*, Y. Sun*. A tantalum-containing zirconium-based metallic glass with superior endosseous implant relevant properties. Bioactive Materials. 39, 25-40 (2024).
7. C. Yuan, H. Lv, Y. Zhang*, F. Qian, D. Xiao, H. Yin*, Z. Lu, Y. Zhang*. Three-dimensional nanoporous heterojunction of CdS/np-rGO for highly efficient photocatalytic hydrogen evolution under visible light. Carbon. 206, 237-245 (2023).
6. K. Zhang, J. Wang, W. N. Zhang*, D. Xiao, H. Yin, Z. Lu, M. Fan, W. Fan, Y. Zhang*, P. Zhang. Adjusted Preferential Adsorption of Intermediates via Regulation of the Electronic Structure during the Electrocatalytic CO2 Reduction Process. The Journal of Physical Chemistry Letters. 15, 34-42 (2023).
5. H. Lv, H. Yin, N. Jiao, C. Yuan, S. Weng, K. Zhou, Y. Dang, X. Wang, Z. Lu, Y. Zhang*. Efficient Charge Transfer and Effective Active Sites in Lead‐Free Halide Double Perovskite S‐Scheme Heterojunctions for Photocatalytic H2 Evolution. Small Methods. 7, 2201365 (2023).
4. X. J. Peng, J. Han, Y. Wang, Z. Bo, A. Nie, P. Li, Y. Li, H. Wu, P. Liu, Z. Lu*, H. Y. Bai*. Unexpected enhanced catalytic performance via highly dense interfaces in ultra-fine amorphous-nanocrystalline biphasic structure. Applied Materials Today. 29, 101689 (2022).
3. J. Han, I. Johnson, Z. Lu, A. Kudo, M. Chen*. Effect of Local Atomic Structure on Sodium Ion Storage in Hard Amorphous Carbon. Nano Letters. 21, 6504-6510 (2021).
2. G. Huang, J. Han, Z. Lu, D. Wei, H. Kashani, K. Watanabe, M. Chen*. Ultrastable Silicon Anode by Three-Dimensional Nanoarchitecture Design. ACS Nano. 14, 4374-4382 (2020).
1. J. Han, G. Huang, Z. Wang, Z. Lu, J. Du, H. Kashani, M. Chen*. Low‐Temperature Carbide‐Mediated Growth of Bicontinuous Nitrogen‐Doped Mesoporous Graphene as an Efficient Oxygen Reduction Electrocatalyst. Advanced Materials. 30, 1803588 (2018).
目前的研究课题及展望:
先进合金功能特性高效表征
发展先进合金功能特性高效表征技术,建立覆盖电催化、传感及降解等典型功能的并行测试与数据分析平台,构建成分—结构—性能数据库,实现先进合金功能性能的快速评价与规律挖掘。未来,将结合自动化实验、机器学习和人工智能算法,实现材料制备、性能测试、数据分析和性能预测的研究,揭示先进合金中成分、结构、形貌、异质界面与性能之间的内在关联,为先进合金材料的智能设计、高效筛选和工程应用提供支撑。
培养研究生情况:
招硕士、博士、博士后。欢迎对先进合金材料高效开发、结构设计及性能表征等领域感兴趣的同学联系。
其他联系方式:
怀柔园区材料基因组研究平台MA321
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