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蒋建中

发布时间:2024-11-11    点击数量:

蒋建中

教授 博士生导师

杰青/长江/973首席科学家

jiangjz@fyust.edu.cn

研究领域:金属玻璃、硅基材料、金属玻璃薄膜、金属液体、同步辐射技术、高熵合金、材料相变


个人简介

1991德国萨尔大学博士。在德国、英国、丹麦学习工作约18年,2004-2023年浙江大学新结构国际研究中心主任。获中科院“百人计划”,国际纳米材料大会“青年科学家”金奖,丹麦杰出青年基金,省“千人计划”,教育部自然科学一等奖,浙江大学第一批“科技创新团队”,培养一篇全国百篇优博论文,“百千万工程”和政府特殊津贴学者,德国Ulm大学、DESY、美国内华达里诺大学、日本东北大学、中国科技大学、厦门大学等兼任教授或研究员。曾负责科技部973、国家重点研发、国基金委重大重点面上等项目40多项,发表国际期刊论文550篇,H因子78,引用超过3万次,其中有Science、PMS、Adv.Mater、PNAS、PRL、JACS、NanoLett.、NatureCommun、Matter、 Sci.Adv.、AFM、ActaMater.等期刊,授权50项专利。

教育背景

1984年浙江师范大学物理系(学士)

1986年北京钢铁学院(现名北京科技大学) 金属物理系(硕士)

1991年德国萨尔大学材料系(博士)

工作履历

1993-1994,英国利物浦大学客座研究员

1994-1996,丹麦技术大学助理教授

1996-2003,丹麦技术大学副教授

2004-2023,浙江大学材料系教授、博导,浙江大学新结构国际研究中心主任

2024-至今,福耀科技大学,新材料与新能源学院,教授

奖励荣誉

1996年,中国科学院“百人计划;

1999年,国际亚稳机械合金纳米材料大会“青年科学家”金奖;

1999年,丹麦技术部颁发的杰出青年基金;

2004年,国家自然科学杰出青年基金;

2006年,教育部长江特聘教授;

2009年,教育部高校优秀科研成果自然科学一等奖(第一完成人);

2010年,浙江大学第一批“科技创新团队”入选者;

2011年,科技部973项目首席科学家;

2012年,培养了一篇全国百篇优秀博士学位论文;

2014年,成为国家“百千万工程”入选者;

2016年,获得国务院特殊津贴。

科研项目

1. 国家自然科学基金面上项目52371165,2024.01-2027.12,温度诱导金属玻璃近程结构变化规律的研究,主持。

2. 国家自然科学基金面上项目11975202,2020.01-2023.12,采用同步辐射技术研究金属熔体结构演化规律,主持。

3. 国家自然科学基金重点项目U1832203,2019.01-2022.12,高熵晶体复杂合金材料结构、热学、电学和力学性能的研究,主持。

4. 科技部国家重点研发计划“大科学装置前沿研究重点专项项目”017YFA0403400,2017.01-2022.06,先进材料同步辐射X-射线多维度原位研究平台,主持。

5. 科技部国家重点研发计划“材料基因工程关键技术与支撑平台”项目2016YFB0701200,2016.07-2020.06,轻质高强镁合金集成计算与制备,主持。

6. 中国载人航天工程空间应用系统项目KJZ-YY-NCL09,2023.01-2025.12,微重力条件下工程金属材料液体热物性研究,主持。

7. 中欧空间站项目,2021.01-2024.12,空间合金熔体的热物理性质及非晶材料形成研究,主持。

学术成果

1. Yifan Wang, Jing Liu, Jian-Zhong Jiang and Wei Cai, Anomalous temperature dependence of elastic limit in metallic glasses, Nature Communications, 15, 171 (2024).

2. Liqiang Hou, Chuang Li, Haeseong Jang, Min Gyu Kim, Jian-Zhong Jiang, Jaephil Cho, Shanguo Liu, and Xien Liu, Rationally Designed Mo/Ru-based Multi-site Heterogeneous Electrocatalyst for Accelerated Alkaline Hydrogen Evolution Reaction, Adv. Mater, 2410039. (2024).

3. Tianding Xu, Xiao-Dong Wang, Eric M. Dufresne, Kevin A. Beyer, Pengfei An, Jingyuan Ma, Nan Wang, Qing-Ping Cao, Shao-Qing Ding, Dong-Xian Zhang, Lei Zheng, Jing Zhang, Tian-Dou Hu, Zheng Jiang, Yuying Huang, and Jian-Zhong Jiang, Unveiling the structural origins of dynamic diversity in Pd-based metallic glasses, Small, 2309331 (2024).

4. Chenghao Huang, Baiyu Guo, Xiaodong Wang, Qingping Cao, Dongxian Zhang, Jianyu Huang, and Jian-Zhong Jiang, Alkali-ion batteries by carbon encapsulation of liquid metal anode, Adv. Mater. 2309732 (2023).

5. Y.X. Li, Raymond Kwesi Nutor, Q.K. Zhao, X.P. Zhang, Q.P. Cao, S.S. Sohn, X.D. Wang, S.Q. Ding, D.X. Zhang, H.F. Zhou, J.W. Wang and J.Z. Jiang, Unraveling the deformation behavior of the Fe45Co25Ni10V20 high entropy alloy, International Journal of Plasticity 165 103619 (2023).

6. M.W. Li, Q.P. Cao, X.D. Wang, S.Q. Ding, D.X. Zhang, and J.Z. Jiang, Fe61.5Cr17.5Ni13Al8 high-entropy alloy: a study of corrosion behavior, Corrosion Science 220, 111302 (2023).

7. Y. Tang, H. F. Zhou, H. M. Lu, X. D. Wang, Q. P. Cao, D. X. Zhang, W. Yang, and J.Z. Jiang, Extra plasticity governed by shear band deflection in gradient metallic glasses, Nature Communications 13, 2120 (2022).

8. ChengHao Huang, XiaoDong Wang, Qingping Cao, Dongxian Zhang, Shaoqing Ding, L.H. Xie and Jian-Zhong Jiang, Soft and Stretchable Liquid-Metal-Elastomer Composite for Wearable Electronics, ACS Applied Materials & Interfaces 14, 38196 (2022).

9. Raymond Kwesi Nutor, Qingping Cao, Xiaodong Wang, Shaoqing Ding, Dongxian Zhang and Jian-Zhong Jiang, Accelerated emergence of CoNi-based medium-entropy alloys with emphasis on their mechanical properties, Current Opinion in Solid State & Materials Science 26, 101032 (2022).

10. K.K. Qiu, X.D. Wang, T.D. Xu, Q.P. Cao, S.Q. Ding, D.X. Zhang, Kevin A. Beyer, and J.Z. Jiang, Two-step annealing induced structural rejuvenation: A cause for memory effect in metallic glasses, Materials Today Physics 27, 100824 (2022).

11. M.W. Li, R.K. Nutor, Q.P. Cao, X.D. Wang, S.Q. Ding, D.X. Zhang, and J.Z. Jiang, Corrosion behavior of Al-containing CoNiV alloys, Corrosion Science 207, 110567 (2022).

12. Yu Chen, Chunguang Tang and Jian-Zhong Jiang, Bulk Metallic Glass Composites Containing B2 Phase, Progress in Materials Science 121, 100799 (2021).

13. Raymond Kwesi Nutor, Qingping Cao, Ran Wei, Qingmei Su, Gaohui Du, Xiaodong Wang, Fushan Li, Dongxian. Zhang, and Jian-Zhong Jiang, A dual-phase alloy with ultrahigh strength - ductility synergy over a wide temperature range, Science Advances 7, eabi4404 (2021).

14. T.D. Xu, X.D. Wang, Eric M. Dufresne, Y. Ren, Q.P. Cao, D. X. Zhang, and J.Z. Jiang, Shape memory effect in metallic glasses, Matter 4, 3327 (2021).

15. Abbas Fadhil, Yu Su, Konstantin Glazyrin, Dawei Jiang, Xiaodong Wang, Qingping Cao, Dongxian Zhang, Chunxiao Gao, and Jian-Zhong Jiang, Pressure-induced atomic packing change in Pd37Ni37S26 metallic glass, Acta Mater. 216, 117116 (2021).

16. Y. Tang, Q. K. Zhao, H. F. Zhou, W. Hu, T. D. Xu, L. Zhen, R. K. Nutor, X. D. Wang, Q. P. Cao, D. X. Zhang, G. Sha, H. K. Wang, and J.Z. Jiang, Tailoring microstructure of metallic glass for ductility by pressure annealing: forward and inverse studies, Acta Mater. 220, 117282 (2021).

17. Y. Tang, H.F. Zhou, X. D. Wang, Q. P. Cao, D.X. Zhang and J.Z. Jiang, Origin of different thermal cycling effects in Fe80P20 and Ni60Nb40 metallic glasses, Materials Today Physics 17, 100349 (2021).

18. T. D. Xu, X. D. Wang, E. M. Dufresne, Y. Ren, Q. P. Cao, D. X. Zhang, and J. Z. Jiang, Anomalous fast atomic dynamics in bulk metallic glasses, Materials Today Physics 17, 100351 (2021).

19. K.K. Qiu, X.D. Wang, T.D. Xu, J. Liu, Q.P. Cao, D.X. Zhang and J.Z. Jiang, Unravelling the origin of in-cage vibrations in a La50Al15Ni35 metallic glass, Materials Today Physics 21, 100515 (2021).

20. Raymond Kwesi Nutor, Q. P. Cao, X. D. Wang, D. X. Zhang, and J. Z. Jiang, Tunability of the mechanical properties of (Fe50Mn27Ni10Cr13)100-xMox high-entropy alloys via secondary phase control, J. Mater. Sci. Tech. 73, 210 (2021).

21. Y. Tang, H.B. Xiao, X. D. Wang, Q. P. Cao, D.X. Zhang and J.Z. Jiang, Mechanical property and structural changes by thermal cycling in phase-separated metallic glasses, J. Mater. Sci. Tech. 78, 144 (2021).

22. J. J. Zong, J. Zhao, X. D. Wang, P. F. An, J. Zhang, T. D. Hu, Q. P. Cao, D. X. Zhang, B. Jiang and J. Z. Jiang, Local atomic structures of Gd and Zn atoms in extruded Mg-Gd-Zn alloys, Scripta Mater. 195, 113720 (2021).

23. N. Wang, Q.P. Cao, W. Yao, X.D. Wang, D.X. Zhang, H.-J. Fecht, and J.Z. Jiang, Anisotropic and size-dependent mechanical responses of free-standing Ni-Nb metallic glass thin film, Scripta Mater. 198, 113832 (2021).

24. Min Hu, Qingping Cao, Xiaodong Wang, Dongxian Zhang, Jian-Zhong Jiang, Fluence-dependent microstructure and nanomechanical property in Co-Ni-V medium entropy alloy thin films, Scripta Mater. 203, 114050 (2021).

25. S.Y. Liu, Q.P. Cao, X. Mu, T.D. Xu, D. Wang, K. Ståhl, X.D. Wang, D.X. Zhang, C. Kübel, and J.Z. Jiang, Tracing intermediate phase during crystallization in a Ni-Zr metallic glass, Acta Mater. 186, 396 (2020).

26. W. Yao, Q.P. Cao, S.Y. Liu, X.D. Wang, H.J. Fecht, A. Caron, D.X. Zhang, and J.Z. Jiang, Tailoring nanostructured Ni-Nb metallic glass thin films by substrate temperature, Acta Mater. 194, 13 (2020).

27. Y. Tang, H.F. Zhou, Q. P. Cao, Y.Z. Fang, X. D. Wang, D.X. Zhang and J.Z. Jiang, Unravelling the origin of stress-dependent glass transition temperature in metallic glass, J. Mechanics and Physics of Solids 137, 103853 (2020).

28. Raymond Kwesi Nutor, Q. P. Cao, X. D. Wang, D. X. Zhang, Yunzhang Fang, Yong Zhang, and J. Z. Jiang, Phase selection, lattice distortions and mechanical properties in high entropy alloys, Adv. Eng. Mater. 22, 2000466 (2020).

29. Ran Wei, Kaisheng Zhang, Liangbin Chen, Zhenhua Han, Chen Chen, Tan Wang, Fushan Li, Jian-Zhong Jiang, Tingwei Hu, Toughening FeMn-based high-entropy alloys via retarding phase transformation, J. Mater. Sci. Tech. 51, 167 (2020).

30. Ran Wei, Kaisheng Zhang, Liangbin Chen, Zhenhua Han, Tan Wang, Chen Chen, Jian-Zhong Jiang and Fushan Li, Novel Co-free high performance TRIP and TWIP medium-entropy alloys at cryogenic temperatures, J. Mater. Sci. Tech. 57, 153 (2020).

31. X. D. Wang, T. D. Xu, Y. Su, Y. Tang, M. Sprung, Q.P. Cao, D.X. Zhang, and J.Z. Jiang, Atomic dynamics transition in a Cu-Zr-Al metallic glass, Scripta Mater. 186, 268 (2020).

32. H. Jia, C. Jiang, Q.J. Wu, S. M. Yang, H. Wang, L. S. Wang, J. Zhao, R.Z. Tai, H. -J. Fecht, Q.P. Cao, X.D. Wang, D.X. Zhang and J.Z. Jiang, Broadband optical absorber based on nano-patterned metallic glass thin films, J. Phys. Chem. Lett. 10, 6055 (2019).

33. S.Y. Liu, Q.P. Cao, D.X. Zhang, and J.Z. Jiang, Metallic glassy thin films: perspective on mechanical, magnetic, biomedical and optical properties, Adv. Eng. Mater. 21, 1900046 (2019).

34. Salman Ali Khan, Xiao-Dong Wang, Qing-Ping Cao, Dong-Xian Zhang, Yun-Zhang Fang, Hao Wang and Jian-Zhong Jiang, Temperature- and pressure-induced polyamorphic transitions in AuCuSi alloy, J. Phys. Chem. C. 123, 20342 (2019).

35. Y. Su, X.D. Wang, P.F. An, J. Zhang, T.D. Hu, Y. Ren, Q. Tao, Q.P. Cao, D.X. Zhang, and J.Z. Jiang, Temperature dependent structural evolution in Au44Ga56 liquid alloy, J. Phys. Chem. C. 123, 25209 (2019).

36. X.D. Wang, J. Zhang, T. D. Xu, Q. Yu, Q.P. Cao, D.X. Zhang, and J.Z. Jiang, Structural signature of beta-relaxation in La-based metallic glasses, J. Phys. Chem. Lett. 9, 4308 (2018).

37. Y. Wang, C.C. Xiao, M.G. Chen, C.Q. Hu, J.D. Zou, C. Wu, J.Z. Jiang, S.Y.A. Yang, Y.H. Lu, W. Ji, Two-dimensional ferroelectricity and switchable spin-textures in ultra-thin elemental Te multilayers, Materials Horizons 5, 521 (2018).

38. H. Ko, H.W. Park, J.Z. Jiang, and A. Caron, Nanoscopic wear behavior of face centered cubic metals, Acta Mater. 147, 203 (2018).

39. X. Chen, Q. Yu, Y. Su, X.D. Wang, Q.P. Cao, D.X. Zhang and J.Z. Jiang, Temperature-induced structural evolution in liquid Sn85Zn15 eutectic alloy, Scripta Mater. 148, 68 (2018).

40. Y. Fu, Q.P. Cao, C. Wang, X.D. Wang, D.X. Zhang, S.X. Qu, H.-J. Fecht, and J.Z. Jiang, Anomalous deformation mode transition in amorphous Mg-Zn-Ca thin films, Scripta Mater. 149, 139 (2018).

41. F. Zhang, Y. Sun, X.D. Wang, Q.P. Cao, J.Z. Jiang, C.Z. Wang and K.M. Ho, Structural connection between gallium crystals and near-Tm liquids under ambient pressure, Scripta Mater. 143, 86 (2018).

42. Chao Wang, Qing Ping Cao, Xiao Dong Wang, Dong Xian Zhang, Upadrasta Ramamurty, R. Lakshmi Narayan and Jian-Zhong Jiang, Intermediate temperature brittleness in metallic glasses, Adv. Mater. 29, 1605537 (2017).

43. Xiaodong Wang and Jian-Zhong Jiang, Perspective on structural evolution and relations with thermophysical properties of metallic liquids, Adv. Mater. 29, 1703136 (2017).

44. L.H. Xiong, X.D. Wang, Q. Yu, H. Zhang, F. Zhang, Y. Sun, Q.P. Cao, H. L. Xie, T. Q. Xiao, D.X. Zhang, C.Z. Wang, K.M. Ho, Y. Ren and J.Z. Jiang, Temperature-dependent structure evolution in liquid gallium, Acta Mater. 128, 304 (2017).

45. Salman Ali Khan, X. D. Wang, Q. P. Cao, D. X. Zhang, and J.Z. Jiang, Structural signature in Au-based amorphous alloys, Acta Mater. 140, 31 (2017).

46. F. Wang, Z.H. Ren, H. Tian, S.Y. Yang, Y.W. Xie, Y.H. Lu, J.Z. Jiang, G.R. Han, K.S. Yang, Interfacial Multiferroics driven by Ferroelectric Polarization-discontinuity: a first-principle calculation, ACS Applied Materials & Interfaces 9, 1899 (2017).

47. Y. Dong, R. Wunderlich, J. Biskupek, Q.P. Cao, X.D. Wang, D.X. Zhang, J.Z. Jiang and H.-J. Fecht, Co content effect on elastic strain limit in ZrCuNiAlCo bulk metallic glasses, Scripta Mater. 137, 94 (2017).

48. Yao Wang, Shan-Shan Wang, Yunhao Lu, Jian-Zhong Jiang, Shengyuan A. Yang, Strain-induced Isostructural and Magnetic Phase Transitions in Monolayer MoN2, NanoLett. 16, 4576 (2016).

49. Q. Yu, X.D. Wang, H.B. Lou, Q.P. Cao, and J.Z. Jiang, Atomic packing in Fe-based metallic glasses, Acta Mater. 102,116 (2016).

50. Yunhao Lu, Di Zhou, Guoqing Chang, Shan Guan, Weiguang Chen, Yinzhu Jiang, Jian-Zhong Jiang, Hsin Lin, Xue-sen Wang, Shengyuan Yang, Yuan Ping Feng, and Yoshiyuki Kawazoe, Multiple Unpinned Dirac Points in Group-Va Single-layers with Phosphorene Structure, NPJ Computational Materials 2, 16011 (2016).

51. M. Wu, J. S. Tse, S.Y. Wang, C.Z. Wang, and J. Z. Jiang, Origin of Pressure-Induced Crystallization of Ce75Al25 Metallic Glass, Nature Communications 6, 6493 (2015).

52. Y.H. Lu, W.T. Xu, M.G. Zeng, G.G. Yao, L. Shen, M. Yang, Z.Y.  Luo, F. Pan, K. Wu, T. Das, P.M.  He, J.Z. Jiang, J. Martin, Y.P. Feng, H.  Lin, and X.S. Wang, Topological Properties Determined by Atomic Buckling in Self-Assembled Ultrathin Bi(110), NanoLett. 15, 80 (2015).

53. J.H. Li, X.D. Wang, T.H. Ludwig, Y. Tsunekawa, L. Arnberg, J.Z. Jiang, P. Schumacher, Modification of eutectic Si in Al-Si alloys with Eu addition, Acta Mater. 84, 153 (2015).

54. L.H. Xiong, K. Chen, F. S. Ke, H. B. Lou, G. Q. Yue, B. Shen, F. Dong, S.Y. Wang, L.Y. Chen, C. Z. Wang, K. M. Ho, X.D. Wang, L. H. Lai, H. L. Xie, T. Q. Xiao, and J.Z. Jiang, Structural and Dynamical Properties of Liquid Ag74Ge26 Alloy Studied by Experiments and ab initio Molecular Dynamics Simulation, Acta Mater. 92, 109 (2015).

55. X.D. Wang, B. Ruta, L.H. Xiong, D.W. Zhang, Y. Chushkin, H.W. Sheng, H.B. Lou, Q.P. Cao, and J.Z. Jiang, Free-volume dependent atomic dynamics in beta relaxation pronounced La-based metallic glasses, Acta Mater. 99, 290 (2015).

56. C. Zhong, H. Zhang, Q. P. Cao, X. D. Wang, D. X. Zhang and J. Z. Jiang, The size-dependent non-localized deformation in a metallic alloy, Scripta Mater. 101, 48 (2015).

57. L.H. Xiong, H.B. Lou, X.D. Wang, T.T. Debela, Q.P. Cao, D.X. Zhang, S.Y. Wang, C.Z. Wang and J.Z. Jiang, Evolution of local atomic structure during solidification of Al2Au liquid: an ab initio study, Acta Mater. 68, 1 (2014).

58. H. F. Zhou, C. Zhong, Q. P. Cao, S. X. Qu, X. D. Wang, W. Yang, and J. Z. Jiang, Non-localized deformation in metallic alloys with amorphous structure, Acta Mater. 68, 32 (2014).

59. H. B. Lou, L. H. Xiong, A. S. Ahmad, A. G. Li, K. Yang, K. Glazyrin, H. P. Liermann, H. Franz, X.D. Wang, Q.P. Cao, D. X. Zhang, and J.Z. Jiang, atomic structure of Pd81Si19 glassy alloy under high pressure, Acta Mater. 81, 420 (2014).

60. T.T. Debela, X.D. Wang, Q.P. Cao, D.X. Zhang, Y.H. Lu, H.-J. Fecht, H. Tanaka and J.Z. Jiang, Nucleation driven by orientational order in supercooled niobium as seen via ab initio molecular dynamics, Phys. Rev. B 89, 104205 (2014).

61. Enzuo Liu, Jiamei Wang, Chunsheng Shi, Naiqin Zhao, Chunnian He, Jiajun Li, and J. Z. Jiang, Anomaly interfacial lithium storage in graphene/TiO2 for lithium ion batteries, ACS Applied Materials & Interfaces. 6, 18147 (2014).

62. H.B. Lou, X.D. Wang, Q.P. Cao, D.X. Zhang, J. Zhang, T.D. Hu, H.-K. Mao and J.Z. Jiang, Negative expansions of interatomic distances in metallic melts, Proceedings of the National Academy of Sciences (PNAS) 110, 10068 (2013).

63. Sean R Shieh, Ignace Jarrige, Min Wu, Nozomu Hiraoka, John S Tse, Zhongying Mi, Linada Kaci, Jian-Zhong Jiang and Yong Q. Cai, Electronic structure of carbon dioxide under pressure and insights into the molecular to nonmolecular transition, Proceedings of the National Academy of Sciences (PNAS) 110, 18402 (2013).

64. Yunhao Lu, Hongmei Jin, Hongjun Zhu, Shuo-Wang Yang, Chun Zhang, J.Z. Jiang, and Yuan Ping Feng, A Possible Reaction Pathway to Fabricate a Half-metallic Wire on a Silicon Surface, Adv. Func. Mater. 23, 2233 (2013).

65. Q.K. Jiang, P. Liu, Q. P. Cao, X. L. Li, X.Y. Gao, X. D. Wang, D.X. Zhang, X. D. Han, Z. Zhang and J.Z. Jiang, Size effect on elastic strain limit in Ni60Nb40 glassy films, Acta Mater. 61, 4689 (2013).

66. L.Y. Chen, B.Z. Li, X.D. Wang, F. Jiang, H. Franz, R. Yang, P.K. Liaw and J.Z. Jiang, Atomic-scale mechanisms of tension-compression asymmetry in a metallic glass, Acta Mater. 61, 1843 (2013).

67. Q.P. Cao, Y. Ma, Y. Xu, L.Y. Chen, C. Wang, Y.Y. Ruan, X.D. Wang and J.Z. Jiang, Bending behaviour of electrodeposited glassy Pd-P and Pd-Ni-P thin films, Scripta Mater. 68, 455 (2013).

68. L. Yang, G. Q. Guo, L. Y. Chen, C. L. Huang, T. Ge, D. Chen, P. K. Liaw, K. Saksl, Y. Ren, Q. S. Zeng, B. LaQua, F. G. Chen, and J. Z. Jiang, Atomic-scale mechanisms of the glass-forming ability in metallic glasses, Phys. Rev. Lett. 109, 105502 (2012).

69. Y. Ma, Q.P. Cao, S.X. Qu, X.D. Wang, and J.Z. Jiang, Effect of structural relaxation on plastic flow in Ni-Nb metallic glassy film, Acta Mater. 60, 3667 (2012).

70. Y. Ma, Q.P. Cao, H.F. Zhou, S.X. Qu, D.X. Zhang, X.D. Wang and J.Z. Jiang, Stress state-dependent plastic flow in an amorphous alloy, Acta Mater. 60, 4136 (2012).

71. Qiaoshi Zeng, Hongwei Sheng, Yang Ding, Lin Wang, Wenge Yang, Jian-Zhong Jiang, Wendy L. Mao, and Ho-Kwang Mao, Long-range topological order in metallic glass, Science 332, 1404 (2011).

72. X. Wang, Q.P. Cao, Y.M. Chen, K. Hono, C. Zhong, Q.K. Jiang, X.P. Nie, L.Y. Chen, X.D. Wang, and J.Z. Jiang, A plastic Zr-based bulk metallic glass, Acta Mater. 59, 1037 (2011).

73. X.D. Wang, H.B. Lou, S.G. Wang, J. Xu and J.Z. Jiang, Atomic packing in Mg61Cu28Gd11 bulk metallic glass, Appl. Phys. Lett. 98, 031901 (2011).

74. H.B. Lou, X.D. Wang, F. Xu, S.Q. Ding, Q.P. Cao, K. Hono and J.Z. Jiang, 73 mm-diameter Bulk Metallic Glass Rod by Copper Mould Casting, Appl. Phys. Lett. 99, 051910 (2011).

75. Qiao-shi Zeng, Yang Ding, Wendy L. Mao, Wenge Yang, Stas.V. Sinogeikin, Jinfu Shu, Ho-kwang Mao and J.Z. Jiang, Origin of Pressure-Induced Polyamorphism in Ce75Al25 Metallic Glass, Phys. Rev. Lett. 104, 105702 (2010).

76. Cen Wang, Yun Zhou, Mingyuan Ge, Xiaobin Xu, Zaoli Zhang and J.Z. Jiang, Large-Scale Synthesis of SnO2 Nanosheets with High Lithium Storage Capacity, J. Am. Chem. Soc. (JACS) 132, 46 (2010).

77. Zhaohui Ren, Gang Xu, Yong Liu, Xiao Wei,Yihan Zhu, Xiaobin Zhang, Guanglie Lv, Youwen Wang, Yuewu Zeng, Piyi Du, Wenjian Weng, Ge Shen, J.Z. Jiang and Gaorong Han, PbTiO3 Nanofibers with Edge-Shared TiO6 Octahedra, J. Am. Chem. Soc. (JACS) 132, 5572 (2010).

78. Q.P. Cao, J.W. Liu, K.J. Yang, F. Xu, A. Minkow, H.J. Fecht, J. Ivanisenko, L.Y. Chen, X.D. Wang, S.X. Qu, and J.Z. Jiang, Effect of pre-existing shear bands on the tensile mechanical properties of a bulk metallic glass, Acta Mater. 58, 1276 (2010).

79. J.W. Liu, Q.P. Cao, L.Y. Chen, X.D. Wang and J.Z. Jiang, Shear band evolution and hardness change in cold-rolled bulk metallic glasses, Acta Mater. 58, 4827 (2010).

80. Z.Q. Yao, Yu. Ivanisenko, T. Diemant, A. Caron, A. Chuvilin, J.Z. Jiang, H.J. Fecht, M. Qi, Synthesis and properties of hydroxyapatite-containing porous titania coating on ultrafine-grained titanium by micro-arc oxidation, Acta Biomaterialia 6, 2816 (2010)

81. Qiao-Shi Zeng, Yang Ding, Wendy L. Mao, Wei Luo, Rajeev Ahuja, Wenge Yang, Jinfu Shu, Stas V. Sinogeikin, Jian-Zhong Jiang, and Ho-kwang Mao, Substitutional Alloy of Ce and Al, Proceedings of the National Academy of Sciences (PNAS) 106, 2515 (2009).

82. X.D. Wang, J. Bednarcik, H. Franz, H.B. Lou, Z.H. He, Q.P. Cao, and J.Z. Jiang, Local strain behavior of bulk metallic glasses under tension studied by in situ high energy x-ray diffraction, Appl. Phys. Lett. 94, 011911 (2009).

83. M. Wu, En-Zuo Liu, M.Y. Ge and J.Z. Jiang, Stability, electronic and magnetic behaviors of Cu adsorbed graphene: A first-principles study, Appl. Phys. Lett. 94, 102505 (2009).

84. L.Y. Chen, Z.D. Fu, G.Q. Zhang, X.P. Hao, Q.K. Jiang, X.D. Wang, Q.P. Cao, H. Franz, Y.G. Liu, H.S. Xie, S.L. Zhang, B.Y. Wang, Y.W. Zeng and J.Z. Jiang, New class of plastic bulk metallic glass, Phys. Rev. Lett. 100, 075501 (2008).

85. Q.K. Jiang, X.D.Wang, X.P. Nie, G.Q. Zhang, H. Ma, H.-J. Fecht, J. Bendnarcik, H. Franz, Y.G. Liu, Q.P. Cao and J.Z. Jiang, Zr-(Cu,Ag)-Al bulk metallic glasses, Acta Mater. 56, 1785 (2008).

86. L.Y. Chen, Q. Ge, S.X. Qu, Q.K. Jiang, X.B. Nie and J.Z. Jiang, Achieving large macroscopic compressive plastic deformation and work-hardening-like behavior in a monolithic bulk metallic glass by tailoring stress distribution, Appl. Phys. Lett. 92, 211905 (2008).

87. M. Wu, En-Zuo Liu and J.Z. Jiang, Magnetic behavior of graphene absorbed with N, O and F atoms: A first-principles study, Appl. Phys. Lett. 93, 082504 (2008).

88. Q.S. Zeng, Y.C. Li, C.M. Feng, P. Liermann, M. Somayazulu, G.Y. Shen, H.-K. Mao, R. Yang, J. Liu, T.D. Hu, and J.Z. Jiang, Anomalous compression behavior in Lanthanum/cerium-based metallic glass under high pressure, Proceedings of the National Academy of Sciences (PNAS) 104, 13565 (2007).

89. Q.K. Jiang, G.Q. Zhang, L. Yang, X.D. Wang, K. Saksl, H. Franz, R. Wunderlich, H. Fecht, and J.Z. Jiang, La-based bulk metallic glasses with critical diameter up to 30 mm, Acta Mater. 55, 4409 (2007).

90. X.D. Wang, J. Bednarcik, K. Saksl, H. Franz, Q.P. Cao and J.Z. Jiang, Tensile behavior of bulk metallic glasses by in-situ high energy X-ray diffraction, Appl. Phys. Lett. 91, 081913 (2007).

91. Q.P. Cao, J.F. Li, Y.H. Zhou, A. Horsewell, and J.Z. Jiang, Effect of rolling deformation on the microstructure of bulk Cu60Zr20Ti20 metallic glass and its crystallization, Acta Mater. 54, 4373 (2006).

92. L. Yang, J.H. Xia, Q. Wang, C. Dong, L.Y. Chen, X. Ou, J.F. Liu, J.Z. Jiang, K. Klementiev, K. Saksl, H. Franz, J.R. Schneider and L. Gerward, Design of Cu8Zr5-based bulk metallic glasses, Appl. Phys. Lett. 88, 241913 (2006).

93. H.P. Wu, J.F. Liu, L. Niu, Y.W. Wang, G.L. Lv, Y.W. Zeng, L.N. Wang, G.Q. Zhang and J.Z. Jiang, Synthesis of Monodisperse GeO2 Nanocubes via Reverse Micelle, Chem. Mater. 18, 1817 (2006).

94. S. Yin, M.X. Xu, L. Yang, J.F. Liu, H. Rosner, H. Hahn, H. Gleiter, D. Shild, S. Doyle, T. Liu, T.D. Hu, E. Takayama-Muromachi, and J.Z. Jiang, Absence of ferromagnetic behavior in bulk polycrystalline Zn0.9Co0.1O, Phys. Rev. B 73 224408 (2006).

95. L. Yang, Y.M. Ma, J. Tse, K. Stahl, Y. Ohishi, Y. Wang, H.K. Mao, J.F. Liu and J.Z. Jiang, Pressure-induced phase transformations in the Ba8Si46 clathrate, Phys. Rev. B 74, 245209 (2006).

96. Y. Wang, Y.Z. Fang, T. Kikegawa, C. Lathe, K. Saksl, H. Franz, J.R. Schneider, L. Gerward, F.M. Wu, J.F. Liu and J.Z. Jiang, Amorphous-like diffraction pattern in solid metallic titanium, Phys. Rev. Lett. 95, 155501 (2005).

97. L. Yang, J.Z. Jiang, T. Liu, T.D. Hu, and T. Uruga, Atomic structure in Zr70Cu29Pd1 metallic glass, Appl. Phys. Lett. 87, 061918 (2005).

98. Y. He, J.F. Liu, W. Chen, Y. Wang, H. Wang, Y.W. Zeng, G.Q. Zhang, L.N. Wang, J. Liu, T.D. Hu, H. Hahn, H. Gleiter and J.Z. Jiang, High-pressure behavior of SnO2 nanocrystals, Phys. Rev. B 72, 212102 (2005).

99. B. Paci, V. Rossi-Albertin, D. Qian, and J.Z. Jiang, Pressure-time-temperature-transformation diagram of the Al89La6Ni5 amorphous alloy, Chem. Mater. 17, 6323-6326 (2005).

100. J.Z. Jiang, W. Roseker, M. Sikorski, Q.P. Cao, and F. Xu, Pressure effect of glass transition temperature in Zr46.8Ti8.2Cu7.5Ni10Be27.5 bulk metallic glass, Appl. Phys. Lett. 84,1871 (2004).

101. L. Yang, Y. Chao, K. Saksl, H. Franz, L.L. Sun, W.K. Wang, N.P. Jiang, X.J. Wu, and J.Z. Jiang, Short-range structure of Zr41Ti14Cu12.5Ni10Be22.5 glass prepared by shock wave, Appl. Phys. Lett. 84,4998 (2004).

102. W. Paszkowicz, R. Minikayev, P. Piszora, M. Knapp, C. Bähtz, J.M. Recio, M. Marqués, P. Mori-Sánchez, L. Gerward, and J.Z. Jiang, Thermal expansion of spinel-type Si3N4, Phys. Rev. B 69, 052103 (2004).