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Profile
Hiroki NADA,
Senior Researcher
Research Institute for Environmental Management and Technology, National Institute of Advanced Industrial Science and Technology
Contact Information
Address: 16-1 Onogawa, Tsukuba, 305-8569
E-mail: hiroki.nada“at”aist.go.jp (but replace "at" with "@")
Personal Homepage:http://unit.aist.go.jp/emtech-ri/26env-fluid/index_en.html
Fields of Interest
Crystal Growth, Computational Physics
Professional Experience
1991-1995 Undergraduate & Graduate Research, Hokkaido University
1995-1997 Postdoctoral Fellow, National Institute for Resources and Environment
1997-2000 Researcher, National Institute for Resources and Environment
2001-present Senior Researcher, National Institute of Advanced Industrial Science and Technology
Education
Dr. 1996, Hokkaido University
Membership of Academic Societies
The Physical Society of Japan, The Japanese Association for Crystal Growth
Awards & Honors
  1. The Japan Society of Applied Physics; JSAP Award B (Outstanding Young Scientist Award) (1996)
  2. The Japanese Association for Crystal Growth; JACG the Best Paper Award (2008)
Research Project
Computer Simulation on Creative Development of Fusion Materials through Molecular Control
Selected Publications
  1. Nada, H., Zepeda, S., Miura, H., Furukawa, Y.
    “Significant Alternations in Anisotropic Ice Growth Rate Induced by the Ice-Nucleation-Active Bacteria Xanthomonas Campestris”,
    Chem. Phys. Lett
    ., 498, 101-106 (2010).

  2. Nada, H.
    “Anisotropy in Growth Kinetics of Tetrahydrofuran Clathrate Hydrate: A Molecular Dynamics Study”,
    J. Phys. Chem. B., 113, 4790-4798 (2009).

  3. Nada, H., Furukawa, Y.
    “Growth Inhibition Mechanism of an Ice-Water Interface by a Mutant of Winter Flounder Antifreeze Protein: A Molecular Dynamics Study”,
    J. Phys. Chem. B., 112, 7111-7119 (2008).

  4. Nada, H.
    “Growth Mechanism of a Gas Clathrate Hydrate from a Dilute Aqueous Gas Solution: A Molecular Dynamics Simulation of a Three-Phase System”,
    J. Phys. Chem. B., 110, 16526-16534 (2006).

  5. Nada, H., Furukawa, Y.
    “Anisotropy in Growth Kinetics at Interfaces between Proton-Disordered Hexagonal Ice and Water: A Molecular Dynamics Study using the Six-Site Model of H2O”,
    J. Cryst. Growth., 283, 242-256 (2005).
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