NISHINO Yoichi

写真a

Affiliation Department etc.

Department of Physical Science and Engineering
Department of Physical Science and Engineering

Title

Professor

Mail Address

E-mail address

Graduating School

  • 1974.04
    -
    1978.03

    Nagoya Institute of Technology   Faculty of Engineering   Department of Metallurgical Engineering   Graduated

Graduate School

  • 1980.04
    -
    1983.03

    Nagoya University  Graduate School, Division of Engineering  Department of Crystalline Materials ScienceDoctor's Course  Completed

  • 1978.04
    -
    1980.03

    Nagoya University  Graduate School, Division of Engineering  Department of Crystalline Materials ScienceMaster's Course  Completed

Degree

  • Nagoya University -  Doctor of Engineering

  • Nagoya University -  Master of Engineering

External Career

  • 1995.05
    -
    1996.03

    University of Cambridge   Department of Matrials Science and Metallurgy   Visiting Scientist  

  • 1983.04
    -
    1986.11

    Hitachi Ltd.   Central Research Laboratory   Researcher  

Academic Society Affiliations

  • 2013.05
    -
    Now

    International Thermoelectric Academy

  • 2004.04
    -
    Now

    The Thermoelectrics Society of Japan

  • 1984.04
    -
    Now

    The Japan Society of Applied Physics

  • 1980.04
    -
    Now

    The Crystallogaphic Society of Japan

  • 1977.04
    -
    Now

    The Japan Institute of Metals and Materials

Field of expertise (Grants-in-aid for Scientific Research classification)

  • Physical properties of metals/Metal-base materials

  • Structural/Functional materials

 

Research Career

  • Pseudogap Engineering of Advanced Functional Materials

    (not selected)  

    Project Year:   - 

  • Nondestructive Evaluation of Mechanical Strength of Materials

    (not selected)  

    Project Year:   - 

  • Nanomechanics and Internal Friction due to Dislocations

    (not selected)  

    Project Year:   - 

  • Development of Thermoelectric Devices for Waste Heat Power Recovery and Generation

    Collaboration in Japan   (not selected)  

    Project Year:   - 

  • Development of Environment-Friendly Thermoelectric Materials

    (not selected)  

    Project Year:   - 

Papers

  • Structure and Thermoelectric Property of Bulk CaMgSi Intermetallic Compound

    N. Miyazaki, N. Adachi, Y. Todaka, H. Miyazaki and Y. Nishino

    AIP Conference Proceedings ( American Institute of Physics )  1865 ( 1 ) 050007/1 - 7   2017.07  [Refereed]

    Research paper (international conference proceedings)   Multiple Authorship

  • Thermoelectric Property of Bulk CaMgSi Intermetallic Compound

    Y. Todaka, N. Miyazaki N. Adachi, H. Miyazaki and Y. Nishino

    Journal of Alloys and Compounds ( Elsevier )  691   914 - 918   2017.01  [Refereed]

    Research paper (scientific journal)   Multiple Authorship

  • Effect of Ta Substitution on the Electronic Structure of Heusler-type Fe2VAl-based Alloy

    H. Miyazaki, M. Inukai, and Y. Nishino

    Journal of Applied Physics ( AIP Publishing )  120 ( 12 ) 12506/1- - 5   2016.09  [Refereed]

    Research paper (scientific journal)   Multiple Authorship

  • Thermoelectric Properties of Al-Mn-Si based C54 Phase Containing Small Amount of C40 Phase

    A. Yamamoto, S. Ghodke, H. Miyazaki,Y. Nishino,M. Matsunami, and T. Takeuchi

    Materials Transacation ( The Japan Institute of Metals and Materials )  57 ( 7 ) 1055 - 1058   2016.07  [Refereed]

    Research paper (scientific journal)   Multiple Authorship

  • Effects of Grain Size on Deformation Behavior of Heusler-type Fe2VAl Alloys

    Y. Fukada, N. Ide and Y. Nishino

    Journal of Japan Institute of Metals and Materials   80 ( 5 ) 317 - 320   2016.05  [Refereed]

    Research paper (scientific journal)   Multiple Authorship

  • Effect of Off-Stoichiometry on the Thermoelectric Properties of Heusler-type Fe2VAl Sintered Alloys

    M. Mikami, M. Inukai, H. Miyazaki and Y. Nishino

    Journal of Electronic Materials ( Springer )  45 ( 3 ) 1284 - 1289   2016.03  [Refereed]

    Research paper (scientific journal)   Multiple Authorship

  • Thermoelectric Properties of Super-Saturated Re Solid Solution of Higher Manganese Silicides

    A. Yamamoto, S. Ghodke, H. Miyazaki, M. Inukai, Y. Nishino, M. Matsunami, T. Takeuchi

    Japanese Journal of Applied Physics   55 ( 2 ) 020301/1 - 4   2016.01  [Refereed]

    Research paper (scientific journal)   Multiple Authorship

  • Electronic and Crystal Structures of Thermoelectric CaMgSi Intermetallic Compound

    H. Miyazaki, M Inukai, K. Soda, N. Miyazaki, N. Adachi, Y. Todaka, Y. Nishino

    Journal of Electron Spectroscopy and Related Phenomena   206   18 - 23   2016.01  [Refereed]

    Research paper (scientific journal)   Multiple Authorship

  • Thermoelectric Properties of the Off-Stoichiometric Heusler Alloys Fe2-yV1+x+yAl1-x Alloys

    M. Inukai, H. Miyazaki, N. Ide, Y. Nishino

    J. Japan Inst. Met. Mater.   79 ( 11 ) 621 - 626   2015.11  [Refereed]

    Research paper (scientific journal)   Multiple Authorship

  • Thermoelectric Properties of Off-Stoichiometric Fe2V1-xAl1+x Sintered Alloys and Design of Thermoelectric Power Generation Module

    M. Mikami, M. Inukai, H. Miyazaki and Y. Nishino

    J. Japan Inst. Met. Mater.   79 ( 11 ) 627 - 632   2015.11  [Refereed]

    Research paper (scientific journal)   Multiple Authorship

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Books

  • Metals and Materials for Young Engineers, 3rd Edition

    E. Yajima, R. Ichikawa, K. Furusawa, T. Miyazaki, T. Kozakai, Y. Nishino (Part: Multiple Authorship )

    Maruzen  2017.01 ISBN: 978-4-621-30124-1

  • Vehicle Waste Heat Recovery Technology, System Technology and Device Development for Practical Use and the Mounting

    M. Mikami, Y. Nishino, N. Uchiyama (Part: Multiple Authorship )

    Science &Technology  2014.12 ISBN: 978-4-86428-113-3

  • Thermoelectric Material, Design and Development with the Aim of Practical Use and Utilization

    H. Miyazaki, Y. Nishino, M. Mikami (Part: Multiple Authorship )

    Johokiko Co., Ltd.  2014.12 ISBN: 978-4-86502-074-8

  • New Development of Unused Heat Energy Practical Use, and New Product Design and New Materials for Energy Conservation of Heat with an Emphasis on Profitability: Points of Profit

    Y. Nishino, M. Mikami (Part: Multiple Authorship )

    Technical Information Institute  2014.05 ISBN: 978-4861045332

  • Thermoelectric Materials & Device Technology Outlook

    M. Mikami, N. Uchiyama, Y. Nishino (Part: Multiple Authorship )

    Electronic Journal Inc.  2014.05

  • Energy Efficient Thermal Management for New Generation Hybrid and Electric Vehicles

    M. Mikami, N. Uchiyama, Y. Nishino (Part: Multiple Authorship )

    Johokiko Co.,Ltd  2013.08 ISBN: 978-4-86502-035-9

  • Power Generation System Technology Corresponding to Various Heat Sources

    M. Mikami, N. Uchiyama, Y. Nishino (Part: Multiple Authorship )

    S&T Publishing inc.  2013.07 ISBN: 978-4-907002-20-6

  • Fundamentals and Applications of Thermoelectrics

    N. Uchiyama, M. Mikami, Y. Nishino (Part: Multiple Authorship )

    CMC Publishing CO., LTD   2011.11 ISBN: 978-4-7813-0480-9

  • Handbook of Thermoelectric Conversion Technology

    Yoichi Nishino (Part: Multiple Authorship )

    NTS Inc.  2008.12 ISBN: 978-4-86043-257-7

  • Technology of Alternatives and Recycling of Rare Metals

    A. Fujita, Y. Nishino, K. Tsuchiya, K. Takenaka, K. Fukamichi (Part: Multiple Authorship )

    CMC Publishing CO., LTD  2008.03 ISBN: 978-4-7813-0002-3

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Review Papers

  • New Development of Thermoelectric Materials Based on Heusler Compounds

    Y. Nishino

    J. Japan Inst. Met. Mater. ( The Japan Institute of Metals and Materials )  79 ( 11 ) 548 - 554   2015.11  [Refereed]  [Invited]

    Introduction and explanation (scientific journal)   Single Author

  • Thermoelectric Module based on Heusler Compounds

    Engineering Materials ( Nikkan Kogyo Publication Inc. )  62 ( 4 ) 48 - 51   2014.04  [Refereed]  [Invited]

    Introduction and explanation (commerce magazine)   Multiple Authorship

  • Development of Heusler-type Fe2VAl Thermoelectric Materials and Responding to Technical Issues

    Y. Nishino, M. Mikami

    MATERIAL STAGE ( Technical Information Institute )  13 ( 8 ) 20 - 23   2013.11  [Refereed]  [Invited]

    Introduction and explanation (commerce magazine)   Multiple Authorship

  • Practical Development of Heusler-type Thermoelectric Materials: From Material Design to Module Fablication

    Yoichi NISHINO, Masashi MIKAMI

    Butsuri ( The Physical Society of Japan )  68 ( 6 ) 350 - 357   2013.06  [Refereed]  [Invited]

    Introduction and explanation (scientific journal)   Multiple Authorship

  • Development of Thermoelectric Materials Based on Fe2VAl Heusler Compound for Energy Harvesting Applications

    Y. Nishino

    IOP Conference Series: Materials Science and Engineering ( Institute of Physics )  18   142001/1 - 6   2011.06  [Refereed]  [Invited]

    Introduction and explanation (scientific journal)   Single Author

  • Development of Thermoelectric Materials Based on Fe2VAl Heusler Compound and Application to Thermoelectric Mojule

    Y. Nishino, M. Mikami

    Materia Japan ( The Japan Instutute of Metals )  50 ( 4 ) 155 - 157   2011.04  [Refereed]  [Invited]

    Introduction and explanation (scientific journal)   Multiple Authorship

  • Development of Thermoelectric Materials Based on Heusler Compounds for Energy Harvesting Applications

    Yoichi Nishino

    J. Jpn. Soc. Powder Powder Metallurgy ( Japan Society of Powder and Powder Metallurgy )  57 ( 4 ) 201 - 206   2010.04  [Refereed]  [Invited]

    Introduction and explanation (scientific journal)   Single Author

  • Development of Thermoelectric Generator for Motorcycle Waste Heat Recovery

    Yoichi NISHINO, Masashi MIKAMI

    Materials Science & Technology ( AGNE Gijutsu Center )  79 ( 3 ) 231 - 236   2009.03  [Refereed]  [Invited]

    Introduction and explanation (scientific journal)   Multiple Authorship

  • Development of Thermoelectric Generation Modules Designed for Motorcycles

    M. MIKAMI, K. KOBAYASHI, N. UCHIYAMA, Y. NISHINO

    Journal of the Thermoelectric Society of Japan ( The Thermoelectric Society of Japan )  5 ( 1 ) 6 - 8   2008.07  [Refereed]  [Invited]

    Introduction and explanation (scientific journal)   Multiple Authorship

  • Pseudogap Engineering of Thermoelectric Materials based on Heusler Compounds

    Yoichi NISHINO

    Journal of the Thermoelectric Society of Japan ( The Thermoelectric Society of Japan )  4 ( 1 ) 17 - 19   2007.06  [Refereed]  [Invited]

    Introduction and explanation (scientific journal)   Single Author

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Presentations

  • Promising Thermoelectric Materials based on Heusler Compounds

    Yoichi Nishino  [Invited]

    IX International School on Thermoelectricity   (Chernivtsi, Ukraine)  2017.07  -  2017.07  The International Thermoelectric Academy

  • New Development of Thermoelectric Materials based on Heusler Compounds

    Yoichi Nishino  [Invited]

    XVII International Forum on Thermoelectricity  (Belfast, UK)  2017.05  -  2017.05  The International Thermoelectric Academy

  • Current Status and Prospects of Theremoelectric Materials based on Heusler Compounds

    Y. Nishino  [Invited]

    2016.09  -  2016.09  Thermoelectric Society of Japan

  • New Development of Thermoelectroc Materials based on Heusler Compounds

    Y. Nishino  [Invited]

    2015.09  -  2015.09 

  • Development of Heusler Fe2VAl Alloy and Thermoelectric Module for Power Generation Device

    M. Mikami, Y. Nishino, N. Uchiyama  [Invited]

    Materials Challenges in Alternative & Renewable Energy 2015  (Jeju, Korea)  2015.02  -  2015.02  The Korean Institute of Chemical Engineers

  • Development of Heusler-type Fe2VAl Alloys for Thermoelectric Power Generation

    Masashi Mikami, Yoichi Nishino  [Invited]

    TMS Symposium on Alloys and Compounds for Thermoelectric and Solar Cell Applications II   (San Diego, USA)  2014.02  -  2014.02  TMS

  • Development of Thermoelectric Heusler Compounds for Energy Harvesting Applications

    Yoichi NISHINO  [Invited]

    XV International Forum on Thermoelectricity  (Tallinn, Estonia)  2013.05  -  2013.05  International Thermoelectric Academy

  • Development of Heusler-type Thermoelectric Materials and Application to Thermoelectric Modules

     [Invited]

    2013.03  -  2013.03 

  • Development of Thermoelectric Materials Based on Fe2VAl Heusler Compound for Energy Harvesting Applications

    Yoichi Nishino  [Invited]

    3rd International Congress on Ceramics  (Osaka, Japan)  2010.11  -  2010.11  The Ceramic Society of Japan

  • Pseudogap Fe2VAl Systems as Thermoelectric Materials

    Yoichi Nishino  [Invited]

    5th European School in Materials Science  (Ljubljana, Slovenia)  2010.05  -  2010.05  European Network of Excellence

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Industrial Property

  • THERMOELECTRIC MATERIAL AND METHOD FOR GENERATING ELECTRICITY

    特願 US 13/820786  特開 US 2013/0167893  特許 US 9276189

    THERMOELECTRIC MATERIAL AND METHOD FOR GENERATING ELECTRICITY

  • THERMOELECTRIC CONVERSION MATERIAL

    特願 EP 20110823590  特許 EP 2615654

    THERMOELECTRIC CONVERSION MATERIAL

  • THERMOELECTRIC MATERIAL AND METHOD FOR GENERATING ELECTRICITY

    特願 2012-532993  特開 WO2012/033116  特許 第5688815号

    THERMOELECTRIC MATERIAL AND METHOD FOR GENERATING ELECTRICITY

  • THERMOELECTRIC CONVERSION MATERIAL

    特願 2011-141656  特開 2013-8902  特許 第5773483号

    THERMOELECTRIC CONVERSION MATERIAL

  • EVALUATION METHOD FOR STRESS RELAXATION RESISTANCE CHARACTERISTICS OF COPPER ALLOY MATERIALS

    特願 2011-52438  特開 2012-189407  特許 第5627000号

    EVALUATION METHOD FOR STRESS RELAXATION RESISTANCE CHARACTERISTICS OF COPPER ALLOY MATERIALS

  • THERMOELECTRIC CONVERSION MATERIAL

    特願 2007-57398  特開 2008-218896  特許 第5070546号

    THERMOELECTRIC CONVERSION MATERIAL

  • THERMOELECTRIC CONVERSION MATERIAL

    特願 2008-506162  特開 WO2007/108176  特許 第5303721号

    THERMOELECTRIC CONVERSION MATERIAL

  • METHOD FOR PRODUCTION OF THERMOELECTRIC CONVERSION MATERIAL

    特願 2003-042490  特開 2004-253618  特許 第4750349号

    METHOD FOR PRODUCTION OF THERMOELECTRIC CONVERSION MATERIAL

  • THERMOELECTRIC CONVERSION MATERIAL, MANUFACTURING METHOD THEREFOR AND THERMOELECTRIC CONVERSION ELEMENT

    特願 2003-523024  特開 WO2003/019681  特許 第4035572号

    THERMOELECTRIC CONVERSION MATERIAL, MANUFACTURING METHOD THEREFOR AND THERMOELECTRIC CONVERSION ELEMENT

Academic Awards Received

  • The 10th Best Paper Award of the Thermoelectric Society of Japan

    2016.09.05    

    Winner: H. Miyazaki, K. Soda and Y. Nishino

  • Who'sWho in the World, 26th

    2008.11    

    Winner: Yoichi Nishino

  • Who'sWho in Asia, 1st

    2006.12    

    Winner: Yoichi Nishino

  • Who'sWho in Science and Engineering, 8th

    2004.12    

    Winner: Yoichi Nishino

  • The Japan Institute of Metals Best Paper Award

    2002.11.02    

    Winner: H. Kato, M. Kato, Y. Nishino, U. Mizutani, S. Asano

  • Nagai Academic Award

    2000.03.28    

    Winner: Yoichi Nishino

  • Murakami Young Researcher Award

    1994.05.19    

    Winner: Yoichi Nishino

  • The Japan Institute of Metals Micrograph Encouragement Award

    1983.04.02    

    Winner: Yoichi Nishino, Toru Imura

 
 

Academic Activity

  • 2016.04
    -
    Now

    The Japan Institute of Metals and Materials   Member, Board of Representatives

  • 2016.04
    -
    Now

    The Japan Institute of Metals and Materials   Member, Executive Board of Tokai Chapter

  • 2013.08
    -
    2014.07

    Japan Society for the Promotion of Science  

  • 2013.08
    -
    2014.07

    Japan Society for the Promotion of Science  

  • 2013.05
    -
    Now

    International Thermoelectric Academy   Academician

  • 2012.04
    -
    2016.04

    The Japan Institute of Metals and Materials   Editorial Committee

  • 2012.03
    -
    2013.02

    The Japan Institute of Metals and Materials   Member, Board of Councilors

  • 2011.04
    -
    2015.03

    The Japan Institute of Metals and Materials   Member, Executive Board of Tokai Chapter

  • 2010.07
    -
    Now

    The Thermoelectrics Society of Japan   Member, Board of Directors

  • 2008.01
    -
    2009.11

    Japan Society for the Promotion of Science   Committee on Grant-in-Aid for Scientific Research

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