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2214
Nanotechnology / Materials
posted:2019/10/16
特許第7158646号

カーボンナノチューブの製造装置および製造方法

NODA, Suguru Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
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2019-0312-05
Nanotechnology / Materials
posted:2019/04/22

High Energy Density LIB Full Cells with Original CNT Sponge-Based S Cathode and Si Anode

NODA, Suguru Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
collaborative researchers:HORI, Keisuke Research Associate
● Original CNT Sponge-Based Battery – holds highly capacitive active materials (S cathode and Si anode) within light-weight, conductive, flexible CNT matrix, allows reversible volume change (S expands and Si shrinks during discharge) while conserves the total cell volume● Nove...
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2019-0312-04
Nanotechnology / Materials
posted:2019/04/22

Heat-Resistant Separator Made of Boron Nitride Nanotubes and Integrated Cathode/Separator/Anode for Light-Weight Batteries

NODA, Suguru Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
collaborative researchers:HORI, Keisuke Research Associate , 金子 健太郎
● Boron nitride nanotube (BNNT) separator (>>500 C).    Binder-less, high porosity, high ion diffusivity.● NEW integrated structure of cathode/separator/anode.    Thin-layer stack offering ion diffusivity & mechanical stability.● Light-...
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2019-0312-03
Nanotechnology / Materials
posted:2019/04/22

Anisotropic Conductive Film of Ag-Cellulose Nanofiber Aerogel

NODA, Suguru Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
collaborative researchers:川上 慧
● Structure is only nanofibers (e.g. cellulose), conductive particles, and Air● High conductivity due to the presence of particles NOT covered with resin● Air insulation between adjacent electrodes
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1870
Nanotechnology / Materials
posted:2017/03/10
特許第6860125号

二次電池

NODA, Suguru Professor (Faculty of Science and Engineering School of Advanced Science and Engineering)
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2020-0131-08
Nanotechnology / Materials
posted:2020/02/06

Very Facile Production of Hydrogen Peroxide from Water under Sunlight

NISHIDE, Hiroyuki Senior Research Professor (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering) (retired)
collaborative researchers:岡 弘樹 (retired)
● We found that polythiophenes act as a rare, combined light-harvester and highly selective catalyst for the  oxygen reduction to H2O2.  Its combination with a conventional oxygen evolution catalyst in water (pH 12)  achieved extremely high H2O2 production rate ...
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2198
Energy
posted:2019/10/16

重合体、硬化性組成物、硬化膜及び重合体の製造方法

NISHIDE, Hiroyuki Senior Research Professor (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering) (retired)
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2012-0307-01
Nanotechnology / Materials
posted:2014/05/21

Organic “soft” secondary batteries

NISHIDE, Hiroyuki Senior Research Professor (Faculty of Science and Engineering Waseda Research Institute for Science and Engineering) (retired)
Development of macromolecules (redox polymers) that have the ability to rapidly and reversibly accept and donate electrons, and can be handled stably even in air at room temperature. 
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2013-1022-03
Life sciences
posted:2013/10/25

生体内常在性物質による抗がん作用

NAMIKI, Hideo Professor (Faculty of Education and Integrated Arts and Sciences) (retired)
collaborative researchers:KIKUTA, Toshiteru Assistant Professor (retired)
・がん細胞に対して選択的に死滅・増殖抑制させる化合物Xを発見した・化合物Xは生体内に常在する物質であるため副作用がない
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2018-1123-07
Life sciences
posted:2018/11/29

Natural compounds affecting cell differentiation

NAKAO, Yoichi Professor (Faculty of Science and Engineering)
●  In vitro neural differentiation model using embryonic stem cell●  Search for active compounds from marine organisms and foods
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1907
Life sciences
posted:2018/11/13
特許第6883845号

アストロサイト分化促進用組成物

NAKAO, Yoichi Professor (Faculty of Science and Engineering)
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1860
Life sciences
posted:2018/07/13
特許第6792753号

フェルラ酸誘導体含有組成物及びその製造方法

NAKAO, Yoichi Professor (Faculty of Science and Engineering)
本発明は、フェルラ酸誘導体を含有する医薬組成物及び食品組成物等の組成物及びその製造方法に関するものである。
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2015-1022-04
Life sciences
posted:2015/10/23

Drug for epigenomic disruption caused by hyperglycemia

NAKAO, Yoichi Professor (Faculty of Science and Engineering)
collaborative researchers:ARAI, Daisuke Part-time Lecturer , 塩田 邦郎 教授
Does hyperglycemia cause a change of epigenome? A compound which prevents hyperglycemia-induced epigenomic aberration, could be a novel drug for diabetes associated with various diseases.
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2015-1022-03
Life sciences
posted:2015/10/23

Neuronal differentiation inducer

NAKAO, Yoichi Professor (Faculty of Science and Engineering)
collaborative researchers:   
・ A series of novel ageladine A derivatives,which has a specific activity on the neuronal differentiation
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2011-0906-05
Life sciences
posted:2014/05/21

Natural marine chemical compounds as materials for drugs As a tool in chemical epigenetics

NAKAO, Yoichi Professor (Faculty of Science and Engineering)
Samples of marine organisms: Over 1,500 species, including marine sponges, coelenterates, protochordates, echinoderms, and mollusks.A diverse range of sampling areas: Japan (Ryukyu Islands, coastal Kyushu, Izu Islands, Sado Island, coastal Sanriku, Kuril Islands), Micronesia, ...
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2011-0906-06
Life sciences
posted:2014/05/21

New anti-Leishmania agent

NAKAO, Yoichi Professor (Faculty of Science and Engineering)
“Cristaxenicin A,” a new chemical compound with anti-Leishmania properties
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2013-1022-04
Life sciences
posted:2013/10/25

海洋天然化合物

NAKAO, Yoichi Professor (Faculty of Science and Engineering)
・海洋無脊椎動物は低分子化合物の宝庫・エピジェネティクス研究のツール
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2205
Environment
posted:2020/11/09
特許第7313002号

二酸化炭素の固定化方法

NAKAGAKI, Takao Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
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2011-0909-03
Environment
posted:2014/05/21

Techniques for separation and recovery of CO2 using lithium silicate

NAKAGAKI, Takao Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
“Lithium silicate” (Li4SiO4), developed by Toshiba, is a solid absorption material that can be used repeatedly to absorb CO2 at 600º and release CO2 at over 800º. It has excellent properties, such as higher absorption speed in the presence of water vapor, the ability to separa...
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2011-0909-04
Environment
posted:2014/05/21

Increase in thermal energy quality through chemical regeneration

NAKAGAKI, Takao Professor (Faculty of Science and Engineering School of Creative Science and Engineering)
While thermal energy can be obtained easily and in large volume, it is irreversible, making it difficult to maintain a high-exergy-rate state. To address this, we can use chemical regeneration. Exergy-lowering processes like vapor reformation and partial oxidation chemically d...
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