京都賞
先進技術 の 京都賞: 年別の受賞者
先進技術 で記録されたすべての受賞年を参照します。
受賞年
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2026
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Creation of Next-Generation Photovoltaic Technologies, Perovskite Solar Cells.
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2025
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Pioneering Contributions to Opening Up Theoretical Foundations of Artificial Intelligence and Establishment of Information Geometry.
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2024
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Contribution of the Theoretical Construction of Metamaterials to the Field of Material Science.
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2023
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Contributions to the Elucidation of Fertilization Mechanisms and the Establishment of Microinsemination Technology.
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2022
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Leading Contributions to the Establishment of the Guiding Principles for VLSI Systems Design.
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2021
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Pioneering Contributions to a New Theory of Computation and Communication and a Fundamental Theory for its Security.
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2019
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Pioneering Contributions to the Birth of High-Efficiency Organic Light-Emitting Diodes and Their Applications.
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2018
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Discovery of Optogenetics and Development of Causal Systems Neuroscience.
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2017
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Invention of the High Electron Mobility Transistor (HEMT) and Its Development for the Progress of Information and Communications Technology.
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2016
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Pioneering Contributions, both Theoretical and Practical, to Computer Vision and Robotics.
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2015
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Pioneering Contributions to the Materials Sciences by Discovering Synthetic Bilayer Membranes and Creating the Field of Chemistry Based on Molecular Self-Assembly.
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2014
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Creation of Tissue Engineering and Drug Delivery System Technologies.
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2013
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Invention of Dynamic Random Access Memory and Proposal of Guidelines for FET Miniaturization.
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2012
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Pioneering Achievements in the Development of Computer Graphics and Interactive Interfaces.
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2011
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Outstanding Contribution to Alloy Materials Engineering by the Establishment of Spinodal Decomposition Theory.
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2010
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Development of Technology for Generating Induced Pluripotent Stem (iPS) Cells.
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2009
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Pioneering Work on Gallium Nitride p-n Junctions and Related Contributions to the Development of Blue Light Emitting Devices.
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2008
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Fundamental Contributions to the Development of the Theory of Computational Complexity.
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2007
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Pioneering and Fundamental Contributions to Organic Molecular Electronics.
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2006
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Outstanding contribution to life sciences with the development of a flow cytometer that uses fluorescent-labeled monoclonal antibodies.
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2005
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Pioneering contributions to the realization of flat-panel displays using liquid crystals.
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2004
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Creation of the concept of modern personal computing and contribution to its realization.
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2003
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Contributions to Nanomaterials Science through the Development of Organic Molecular Self-Assembly Technique.
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2002
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Contributions to life sciences through the automation of protein and DNA sequencing and synthesis.
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2001
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Izuo Hayashi, Morton B. Panish, Zhores I. Alferov
A Pioneering Step in the Development of Optoelectronics through Success in Continuous Operation of Semiconductor Lasers at Room Temperature.
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2000
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Pioneering and Fundamental Contributions to the Progress of Software Science.
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1999
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Fundamental Contribution to Development of the Ceramics Science and Technology Based on the Physicochemical Theory.
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1998
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Outstanding Contribution to Biology through the Expansion of the Nuclear Magnetic Resonance (NMR) Spectroscopy to the Structure Analyses of Biological Macromolecules in Water Solution, an Environment Similar to That in the Living Cell.
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1997
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Federico Faggin, Marcian Edward Hoff, Jr., Masatoshi Shima, Stanley Mazor
Development of the World’s First Microprocessor.
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1996
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Outstanding Contribution to Various Fields of the Computer Science Ranging from the Art of Computer Programming to the Development of Epoch-Making Electronic Publishing Tools.
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1995
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Fundamental Contribution to Research and Development of Liquid Crystal Materials by Establishing the Practical Molecular Design Methods.
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1994
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Proposal of the Basic Principles and Outstanding Contribution to the Development of MRI that Confers a Great Benefit on Clinical Medicine.
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1993
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Creation of the Concept of the Monolithic Semiconductor Integrated Circuit and Its Demonstration.
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1992
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Building and Designing the First Practical Stored Program Computer and Pioneering Studies of Computer Architecture.
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1991
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Pioneering Contribution to Research and Development of Polymeric Materials by Discovering ' Living Polymerization '.
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1990
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Pioneering Contribution to Molecular Biology through Demonstration of Messenger RNA and Establishment of C. Elegans as an Experimental System for Developmental Biology.
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1989
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Pioneering Contribution to the Electronic Switching Technology for Telecommunications, Especially that Based on the Concept of ' Stored Program Control '.
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1988
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Fundamental Contribution to the Field of Artificial Intelligence and the Invention of LISP, a Programming Language.
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1987
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Fundamental Contribution to Development of New Materials Based on Creation of Broad and Basic Insights into the Metal Phase Transformation and Structure-Property Relationship.
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1986
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Outstanding Contribution to Embryology through the Development of the Technology for Making Chicken/Quail Chimeras.
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1985
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Establishment of the Modern Control Theory Based on the State Space Approach.
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