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2019-0312-06
Nanotechnology / Materials
posted:2019/04/22

Display Device for Visual Texture

IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
● We proposed spatial mixing using glossy and matte surfaces for reconstruction of visual texture.● Our method can display various visual texture by changing the area ratio of glossy and matte surfaces.
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2017-0223-04
Nanotechnology / Materials
posted:2017/02/23

Operation of 3-D MEMS Micro Mirror by Single Superposed Driving Signal

IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
● By single driving apparatus, MEMS micro mirror is actuated in  three resonant modes● MEMS micro mirror is operated in 3-D by single superposed signal with the three resonant frequencies  
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1828
Nanotechnology / Materials
posted:2016/07/05
2017-219681

視覚的質感提示デバイスおよび視覚的質感提示方法

IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
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1827
Nanotechnology / Materials
posted:2016/07/05
2017-220555

曲げ変形および伸縮変形可能な電子デバイス

IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
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2015-0303-06
Nanotechnology / Materials
posted:2015/03/03

Self-healing Metal Wire for Stretchable Devices

IWASE, Eiji Professor (Faculty of Science and Engineering School of Fundamental Science and Engineering)
collaborative researchers:古志 知也
・High conductivity, and high stretchability for electric wire・Selective healing of a crack on a wire by “self-healing”function
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2016-0203-02
Nanotechnology / Materials
posted:2016/02/03

Electronic devices composed of polymer nanosheets

FUJIE, Toshinori Guest Researcher
collaborative researchers:IWASE, Eiji Professor , TAKEOKA, Shinji Professor , IWATA, Hiroyasu Professor
● Flexible electronic devices mounted on free-standing polymer nanosheets ● Fabrication of conductive lines by inkjet printing of silver nanoparticles at room temperature● Soldering-free packaging of electronic elements (e.g., LED) based on van der Waals interactions
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