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“The joy of discovery is certainly the liveliest that the mind of man can ever feel”

- Claude Bernard -

Journal Publications
  1. Citations & Publications

  2. S. Li, Y. Li, Y.C. Lo, T. Neeraj, R. Srinivasan, X. Ding, J. Sun, L. Qi, P. Gumbsch and J. Li, “The interaction of dislocations and hydrogen-vacancy complexes and its importance for deformation-induced proto nano-voids formation in alpha-Fe”, International Journal of Plasticity 74 (2015) 175. (SCI, IF: 5.8, ENGINEERING, MECHANICAL: 2/130 Q1, Cited: 0)

  3. Y. Mao, J. Li, Y.C. Lo, X. Qian, and E. Ma, “Stress-driven crystallization via shear-diffusion transformations in a metallic glass at very low temperature”, Physical Review B 91 (2015) 214103. (SCI, IF: 3.6, PHYSICS, CONDENSED MATTER: 15/68 Q1, Cited: 0)

  4. Jun Sun*, Longbing He*, Yu-Chieh Lo*, Tao Xu, Hengchang Bi, Litao Sun, Ze Zhang, Scott X. Mao and Ju Li, “Liquid-like behaviors of sub-10-nm crystalline silver nanoparticles”, Nature Materials 13 (2014) 1007. * denotes equal contribution as the first author. (SCI, IF: 36.4, MATERIALS SCIENCE: 1/251 Q1, Cited: 10)

  5. S.C. Yeo, Y.C. Lo, J. Li, and H.M. Lee, “Theoretical study of the ammonia nitridation rate on an Fe (100) surface: A combined density functional theory and kinetic Monte Carlo study”, The Journal of Chemical Physics 141 (2014) 134108. (SCI, IF: 3.142, PHYSICS: 8/33 Q1, Cited: 0)

  6. E.W. Huang, J. Qiao, B. Winiarski, W.J. Lee, M. Scheel, C.P. Chunag, P.K. Liaw Y.C. Lo, Y. Zhang and M.D. Michiel, “Microyielding of core-shell crystal dendrites in a bulk-metallic-glass matrix composite”, Scientific Reports 4 (2014) 4394. (SCI, IF: 5.07, MULTIDISCIPLINARY SCIENCES: 5/55 Q1, Cited: 2)

  7. Jian Yu Huang*, Yu-Chieh Lo*, Jun Jie Niu, Akihiro Kushima, Xiaofeng Qian, Li Zhong, Scott X. Mao, Ju Li, “Nanowire liquid pumps”, Nature Nanotechnology 8 (2013) 277. * denotes equal contribution as the first author. (SCI, IF: 36, MATERIALS SCIENCE: 2/239, NANOTECHNOLOGY: 1/69 Q1, Cited: 15)

  8. S.W. Nam, H.S. Chung, Y.C. Lo, L. Qi, J. Li, Y. Lu, A.T.C. Johnson, Y. Jung, P. Nukala, and R. Agarwal, “Electrical wind force-driven and dislocation-templated amorphization in phase-change nanowires”, Science 336 (2012) 1561. (SCI, IF: 33.5, MULTIDISCIPLINARY SCIENCES: 2/56 Q1, Cited: 52)

  9. E.W. Huang, G. Csiszar, Y.C. Lo, Y.L. Huang, W.J. Lee, T. Ungar, and P.K. Liaw, “Plastic deformation of a nano-precipitate strengthened Ni-base alloy investigated by complementary in-situ neutron diffraction measurements and molecular-dynamics simulations”, Advanced Engineering Materials 14 (2012) 902. (SCI, IF: 1.78, MATERIALS SCIENCE: 88/239 Q2, Cited: 2)

  10. Y.C. Lo, H.S. Chou, Y.T. Cheng, J.C. Huang, J.R. Morris, P.K. Liaw, “Structural relaxation and self-repair behavior in nano-scaled Zr-Cu metallic glass under cyclic loading: Molecular dynamics simulations”, Intermetallics 18 (2010) 954. (SCI, IF: 2, METALLURGY & METALLURGICAL ENGINEERING: 8/75 Q1, Cited: 11)

  11. L.J. Peng, J.R. Morris, and Y.C. Lo, “Temperature-dependent mechanisms of homogeneous crystal nucleation in quenched Lennard-Jones liquids: Molecular dynamics simulations”, Physical Review B 78 (2008) 012201. (SCI, IF: 3.6, PHYSICS, CONDENSED MATTER: 15/68 Q1, Cited: 9)

  12. Y.C. Lo, J.C. Huang, S.P. Ju, “Atomic structure evolution of Zr-Ti and pure Zr during accumulated roll bonding by HA pair analysis”, Materials Chemistry Physics 112 (2008) 466. (SCI, IF: 2.4, MATERIALS SCIENCE, MULTIDISCIPLINARY: 60/239 Q2, Cited: 2)

  13. Y.C. Lo, J.C. Huang, C.L. Chen, S.P. Ju, H.S. Chou, X.H. Du, M.C. Liu, and C.N. Kuo, “Atomic simulation study of vitrification transition in Mg-Cu thin film”, Journal of Computational and Theoretical Nanoscience 5 (2008) 1717. (SCI, IF: 0.6, MATERIALS SCIENCE, MULTIDISCIPLINARY: 179/239 Q3, Cited: 0)

  14. Y.C. Lo, S.P. Ju, J.C. Huang, and X.H. Du, “Atomic structure evolution of Zr-Ni during severe deformation by HA pair analysis” Physical Review B 76 (2007) 024103. (SCI, IF: 3.6, PHYSICS, CONDENSED MATTER: 15/68 Q1, Cited: 9)

  15. P.J. Hsieh, Y.C. Lo, C.T. Wang, J.C. Huang, and S.P. Ju, “Cyclic transformation between nanocrystalline and amorphous phases in Zr based intermetallic alloys during ARB”, Intermetallics 15 (2007) 644. (SCI, IF: 2, METALLURGY & METALLURGICAL ENGINEERING: 8/75 Q1, Cited: 11)

  16. S.J. Sun, S.P. Ju, Y.C. Lo, and J.S. Lin, “Investigation on the crystalline process of Co-Cu nanoparticle during the annealing”, Solid State Phenomena, 121-123 (2007) 163.

  17. P.J. Hsieh, Y.C. Lo, J.C. Huang, and S.P. Ju, “On the latest stage of transformation from nanocrystalline to amorphous phases during ARB: Simulation and experiment”, Intermetallics 14 (2006) 924. (SCI, IF: 2, METALLURGY & METALLURGICAL ENGINEERING: 8/75 Q1, Cited: 13)

  18. S.J. Sun, S.P. Ju, Y.C. Lo, “Theoretical study of diluted Co/Cu alloys”, Journal of Magnetism and Magnetic Materials 305 (2006) 428. (SCI, IF: 1.5, PHYSICS, CONDENSED MATTER: 28/68 Q2, Cited: 0)

  19. S.P. Ju, Y.C. Lo, S.J. Sun, and J.G. Chang, “Investigation on the structural variation of Co-Cu nanoparticles during the annealing process”, Journal of Physical Chemistry B 109 (2005) 20805. (SCI, IF: 3.7, CHEMISTRY, PHYSICAL: 34/134 Q2, Cited: 16)

  20. S.J. Sun, S.P. Ju, Y.C. Lo, and J.S. Lin, “An investigation into the magnetic properties of Co-Cu nanoparticles at different temperatures”, Journal of Applied Physics 97 (2005) 094308. (SCI, IF: 2.2, PHYSICS, APPLIED: 31/127 Q1, Cited: 8)

Academic Activity
  1. Oral presentation, 2015 MRS Fall Meeting & Exhibit “Local heating effects on the development of shear bands in metallic glass”, Boston, US, Nov. 29 2015.

  2. Oral presentation, 2015 MRS Fall Meeting & Exhibit “The interaction of dislocations and hydrogen-vacancy complexes and its importance for deformation-induced proto nano-voids formation in alpha-Fe”, Boston, US, Nov. 29 2015.

  3. Oral presentation, 1st Association of Computational Mechanics Taiwan (ACMT) Conference “Thermo-mechanical behavior of inhomogeneous deformation in bulk metallic glasses”, Taipei, Taiwan, Oct. 22, 2015.

  4. Oral presentation, 2011 MRS Fall Meeting & Exhibit “Strain Boost Molecular Dynamics Simulations of Metallic Glasses”, Boston, US, Nov. 29 2011.

  5. Oral presentation, The MD Workshop on Nano- & Amorphous Alloys “MD Simulation on Fatigue Response in Metallic Glasses”, National Sun Yat-Sen University, Taiwan, Dec. 17, 2008.

  6. Student scholar exchange program in the University of Tennessee, Knoxville, TN, USA, Jul. 15 - Oct. 15, 2007.

  7. Oral presentation, The Workshop on Nano- & Amorphous Alloys, National Sun Yat-Sen University, Taiwan, Mar. 14, 2007.

  8. Oral presentation, The Workshop on Nano- & Amorphous Alloys, National Sun Yat-Sen University, Taiwan, Dec. 7, 2006.

  9. Oral presentation, The 21th Chinese Society of Mechanical Engineers “Investigation on the Structural Variation of Co-Cu Nanoparticles during the Annealing Process”, National Sun Yat-Sen University, 2004.

  10. Oral presentation, The Conference on Precision Machinery and Manufacturing Technology-PMMT 2004 “An Investigation into the Magnetic Properties of Co-Cu Nanoparticles at Different Temperatures”, Kenting, Taiwan, 2004.

  11. Poster, 2011 MRS Fall Meeting & Exhibit “Nanofluidic Flow on a Solid Nanowire”, Boston, US, Nov. 29 2011.

  12. Poster, The Sixth International Bulk Metallic Glasses Conference (BMG-VI) “Molecular Dynamics Simulations of Fatigue Damage in Binary Zr-Cu Metallic Glass”, Xi’an, China, May 2008.

  13. Poster, The Fifth International Bulk Metallic Glasses Conference (BMG-V) “Atomic Structure Evolution of Zr-Ti and Pure Zr during Accumulated Roll Bonding by HA Pair Analysis”, Awaji, Japan, Oct. 1, 2006.

  14. Poster, Annual Conference of Chinese Society for Materials Science, National Chiao Tung University, Taiwan, Nov. 24, 2007.

  15. Poster, Annual Conference of Chinese Society for Materials Science, National Cheng Kung University, Taiwan, Nov. 24, 2006.

  16. Poster, China NANO, China International Conference on Nanoscience and Technology, China, 2005.

  17. The Workshop on Nano- & Amorphous Alloys, Kenting, Taiwan, Jan. 5, 2006.

先進模擬材料實驗室                                                                                                    羅友杰老師實驗室

                                                                                                     

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