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成果報告書詳細
管理番号20170000000132
タイトル*平成28年度中間年報 超先端材料超高速開発基盤技術プロジェクト
公開日2017/4/15
報告書年度2016 - 2016
委託先名国立研究開発法人産業技術総合研究所 先端素材高速開発技術研究組合
プロジェクト番号P16010
部署名材料・ナノテクノロジー部
和文要約
英文要約Ultra High-Throughput Design and Prototyping Technology for Ultra Advanced Materials Development Project (FY2016-FY2018)FY2016 Annual Report

In Fy2016 we have carried out 13 tasks and obtained several useful results for next years. In the subjects 1) to 5), algorisms for multiscale simulators across the micro/meso/macroscopic scales are developed and preliminary calculations were carried out. And in process and characterization of (6) to (12) the specifications for variable fabrication equipment and high-throughput measuring instruments were determined and then got them according to the facility introduction plan.
1) Development of multiscale computer simulators for carrier transport in functional materials
1-1) Multiscale computer simulators for electrical and thermal conduction
1-2) Multiscale computer simulators for dynamics of molecules, ions and atoms at interface
2) Large and multi-scale computer simulators for electro-active and complex materials
 2-1) Large and multi-scale simulators for electric field response by first principle many bodies calculation
2-2) Computer simulators for materials organization and micro-structures
3) Multiscale computer process simulators for functional polymer materials with nano-structures
3-1) Reconstruction of OCTA as integrated simulation platform for soft materials
3-2) Coarse-graining simulation for functional polymer materials
4) Multiscale computer simulations for chemical reaction and fluid
5) Analysis of data of materials by deep learning, mechanical learning and disintegration geometry

6) Variable fabrication with heterojunction by various interface control
7) Platform for processes in polymer blend and foaming
8) Flow reactors for variable synthesis

9) Simultaneous characterizations of structure and nanoscale properties at surface and interface: Sum frequency generation spectroscopy and nano-probe spectroscopy
10) Nanoscale structural evaluation in organic/inorganic composite materials: Electron spectroscopic transmission electron microscopy
11) 3-Dimensional structural characterization from nano- to micro-meter: Positron extinction and X-ray CT
12) High sensitive and in-situ characterization in flow process: XAFS and DNP-NMR

13) Investigation of resemble research and development in world wide
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