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2024-0206-04
Nanotechnology / Materials
posted:2024/02/06

Analytical equipment specialized for Microdevices

TANAKA, Daiki Assistant Professor
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2024-0206-03
Life sciences
posted:2024/02/06

Establishment of new chemical reaction methods

TANAKA, Daiki Assistant Professor
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2023-1025-06
Nanotechnology / Materials
posted:2023/10/25

流体制御による高効率細胞トラップデバイスの開発

TANAKA, Daiki Assistant Professor
◆ 独自流路構造によって細胞の単離や任意の細胞の取り出しに成功
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2023-0127-05
Nanotechnology / Materials
posted:2023/01/27

新しい化学反応手法の確立

TANAKA, Daiki Assistant Professor
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2022-0203-07
Nanotechnology / Materials
posted:2022/02/03

Method for simultaneously observing atomic and electronic structures by a high-resolution display-type photoelectron analyzer with Spherical micro-hole grid

MIZUNO, Jun Guest Senior Researcher (retired)
collaborative researchers:室 隆桂之 (retired), 松下 智裕 (retired), 澤村 ⼀実 (retired)
● In 2013, Prof. Matsushita of NAIST invented the principle of a new type of electron analyzer (retarding field analyzer: RFA) and the special spherical micro-hole grid (3D Micromesh electrodes) using electron orbit simulation. By combining RFA (element electric field typ...
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2022-0203-05
Nanotechnology / Materials
posted:2022/02/03

Hybrid Bonding at Low Temperature and Atmospheric Pressure

MIZUNO, Jun Guest Senior Researcher (retired)
collaborative researchers:SHOJI, Shuichi Professor (retired), 重藤 暁津 (retired)
● Hybrid bonding of Cu, PDMS, and quartz at 150 ℃ and atmospheric pressure
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2022-0203-01
Nanotechnology / Materials
posted:2022/02/03

Application of Microdroplets to Chemical Reactions

TANAKA, Daiki Assistant Professor
collaborative researchers:藤⽥ 博之 , 関⼝ 哲志 , SHOJI, Shuichi Professor
● Design of micro-devices to stabilize droplet generation,surface treatment of channels, and flow conditions● Encapsulation of chemicals for chemical reaction field control
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2471
Social Infrastructure
posted:2021/07/06
特開2023- 1821

地層処分システムの緩衝材・埋め戻し材の湿度を計測する湿度計

WANG, Hailong Associate Professor (retired)
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2353
Nanotechnology / Materials
posted:2020/06/16

リチウム硫黄二次電池

OSAKA, Tetsuya Senior Research Professor (retired)
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2015
Nanotechnology / Materials
posted:2020/02/10
特開2019-202097

Biological Implant Material with Bone Seeking

MIZUNO, Jun Guest Senior Researcher (retired)
●  Control surface morphology of implant in nanoscale. ●  Combination of large and small nanostructures which has different functionalities, respectively.●  Nanostructure formation process applicable for curved surfaces.
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2020-0131-09
Nanotechnology / Materials
posted:2020/02/06

Battery Diagnosis by Square-Current Electrochemical Impedance Spectroscopy

MUKOYAMA, Daikichi Researcher (retired)
collaborative researchers:OSAKA, Tetsuya Senior Research Professor (retired)
● Power controller in Battery Management System (BMS) can be formed only simple current veform, such as a square waveform. Applying square current input generated by power controller can measure impedance.
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2020-0131-06
Nanotechnology / Materials
posted:2020/02/06

Walking and running robot crystals

KOSHIMA, Hideko Guest Senior Researcher (retired)
collaborative researchers:ASAHI, Toru Professor (retired)
● Crystal actuators that move by light and heat● Light and tough mechanical crystals● Practical application to soft robots
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2018-1123-05
Life sciences
posted:2018/11/29

Biological Implant Material with Bone Seeking

MIZUNO, Jun Guest Senior Researcher (retired)
collaborative researchers:塩澤 茉由子 (retired), KUWAE, Hiroyuki Assistant Professor (retired), SHOJI, Shuichi Professor (retired)
●  Control surface morphology of implant in nanoscale. ●  Combination of large and small nanostructures which has different functionalities, respectively.●  Nanostructure formation process applicable for curved surfaces.
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2018-1026-02
Life sciences Nanotechnology / Materials
posted:2018/10/30

Nanosheet for detecting deformation and motion of biological tissue (soft materials)

FUJIE, Toshinori Guest Researcher (retired)
collaborative researchers:鉄 祐磨 (retired), TAKEOKA, Shinji Professor (retired)
● Polymer nanosheets for the substrate has high flexibility.● Dots were marked on nanosheet at regular intervals.● Motion or deformation were estimated from position information of dots.
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2018-0927-05
Life sciences Nanotechnology / Materials
posted:2018/09/27

Development of magnetic nanoparticles for cancer care

OSAKA, Tetsuya Senior Research Professor (retired)
● Magnetite nanoparticles with the mean size tuned in the range of 10 to 40 nm● High dispersibility of nanoparticles (modified with amine) in aqueous solution● Use of cells containing nanoparticles in the treatment and diagnosis of cancer
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1931
Nanotechnology / Materials
posted:2017/06/23
第6561407号

組電池、電池モジュールおよび電池モジュールの評価方法

OSAKA, Tetsuya Senior Research Professor (retired)
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2017-0223-05
Nanotechnology / Materials
posted:2017/02/23

Ultra-Thin Film Luminescence Sensor

FUJIE, Toshinori Guest Researcher (retired)
collaborative researchers:佐藤 裕崇 (retired), TAKEOKA, Shinji Professor (retired)
● Luminescence sensor made from free-standing polymer nanosheets with the thickness of tens to hundreds of nanometers.● Versatile fabrication by selecting sensor dyes (e.g.,temperature, oxygen concentration).● Ratiometric sensing of biological information.
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2016-1024-02
Life sciences
posted:2016/10/24

On-Chip Quasi-in vivo Assay Technology for Predictive Drug Discovery and Diagnostics

安田 賢二 教授 (理工学術院 先進理工学部)
● We have developed an on-chip quasi-in vivo technology consisting of, (1) non-invasive cell sorting, (2) 3-D cell network formation, (3) non-destructive single cell dynamics measurement.
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1808
Life sciences
posted:2016/06/06
第6692542号

皮膚表面pHの測定法

OSAKA, Tetsuya Senior Research Professor (retired)
■動物(ヒト、イヌ、ネコ、サルなど)の皮膚表面のpHを測定する方法。
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2016-0204-01
Nanotechnology / Materials
posted:2016/02/04

Fabrication of carbon nanotube yarn with high functionality

金 太成 (理工学術院 機械科学・航空学科)
collaborative researchers:酒井 貴広 , HOSOI, Atsushi Professor , KAWADA, Hiroyuki Professor
● CNT yarn was drawn from vertically aligned CNT array● CNT composite yarn was developed by electrolytic plating● Controlling of plating by changing plating condition● Superior electrical conductivity (2.14×107 S/m)
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