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SUDARE Tomohito

Academic OrganizationFaculty of EngineeringTEL+81-26-269-5781
Education and Research OrganizationInterdisciplinary Cluster for Cutting Edge Research Research Initiative for Supra-MaterialsFAX+81-26-269-5441
PositionAssistant ProfessorMail
Address4-17-1, Wakasato, Nagano City 380-8553Web site


Research Field
Inorganic Chemistry
Materials chemistry
Keywords:adsorption , ion-exchange , Nano-space , inorganic crystalline materials , control of local structure , structural analysis , crystal growth , LDHs , anion , synchrotron-light
Academic Background
Graduate School


Books, Articles, etc.
Growth of β‑Li2TiO3 Nanocrystals from LiCl and LiOH Fluxes
Cryst. Growth Des. DOI: 10.1021/acs.cgd.8b01758,19(2):1377-1383 2019
Author:F. Hayashi, K. Ogawa, Y. Moriya, T. Sudare, and K. Teshima

Hierarchical spheres of Mg–Al LDH for the removal of phosphate ions: effect of alumina polymorph as precursor
CrystEngComm (selected as Back Cover),21:7211-7216 2019
Author:T. Sudare, A. Zenzai, S. Tamura, M. Kiyama, F. Hayashi and K. Teshima

Highly Crystalline Ni–Co Layered Double Hydroxide Fabricated via Topochemical Transformation with a High Adsorption Capacity for Nitrate Ions
Inorganic Chemistry,,58(23):15710-15719 2019
Author:T. Sudare, S. Tamura, H. Tanaka, F. Hayashi and K. Teshima

Favorable Intercalation of Nitrate Ions with Fluorine-Substituted Layered Double Hydroxides
Inorganic Chemistry (selected as Supplementary Cover),ASAP 2019
Author:T. Sudare, M. Dubois, N. Louvain, M. Kiyama, F. Hayashi, and K. Teshima

Growth of {100}-faceted NaFeTiO4 crystals with a tunable aspect ratio from a NaCl–Na2SO4 binary flux
CrystEngComm (selected as Front Cover),20:873-878 2018
Author:T.Sudare, D.Kawaura, K.Yubuta, F.Hayashi, and K.Teshima

Flux-Mediated Topochemical Growth of Platelet-Shaped Perovskite LiNbO3 Single Crystals from Layered Potassium Niobate Crystals
Cryst. Growth Des. DOI: 10.1021/acs.cgd.8b00511,18(7):4111-4116 2018
Author:D.Kim‡, T.Sudare‡, T.Nakanishi, S.Yuasa, K.Yubuta, N.Zettsu, and K.Teshima (‡These authors contributed equally.)

Fabrication of Fluorapatite Nanocrystal–Activated Carbon Composite by Atmospheric Pressure Plasma-Assisted Flux Method
Cryst. Growth Des. DOI: 10.1021/acs.cgd.7b01294,18(10):5763-5769 2018
Author:T.Sudare, C.Mori, F.Hayashi, and K.Teshima

軽金属学会誌,(66):9 2016

Effect of treatment time in the Mg(OH)2/Mg-Al LDH composite film formed on Mg alloy AZ31 by steam coating on the corrosion resistance
Surf. Coat. Technol.,(286):172 2016
Author:Naosumi Kamiyama, Gasidit Panomsuwan, Erina Yamamoto, Tomohito Sudare, Nagahiro Saito, and Takahiro Ishizaki

Solution Plasma Reaction Field for Materials Synthesis
Journal of MMIJ,(132):47 2016
Author:Tomohito Sudare, Tomonaga Ueno, Nagahiro Saito

In Situ Formation of Anticorrosive Mg(OH)2/Carbon Composite Film on Magnesium Alloy by Ascorbic Acid-Assisted Hydrothermal Process
J. Electrochem. Soc.,(162):C741 2015
Author:Takahiro Ishizaki, Naosumi Kamiyama, Erina Yamamoto, Sou Kumagai, Tomohito Sudare, Nagahiro Saito

材料の科学と工学,(52):23 2015
Author:木口崇彦,簾智仁,金子陽太,千葉聡,Gasidit Panomsuwan,齋藤永宏,石﨑貴裕

Accelerated Nanoparticles Synthesis in Alcohol-Water Mixture Based Solution Plasma
Phys. Chem. Chem. Phys. DOI:10.1039/C5CP05168A,(117):30255 2015
Author:Tomohito Sudare, Tomonaga Ueno, Anyarat Watthanaphanit, Nagahiro Saito

表面技術,(117):46 2015
Author:簾智仁,上野智永,ワッタナパーニット アンヤラット,齋藤永宏

Verification of Radicals Formation in Ethanol–Water Mixture Based Solution Plasma and Their Relation to the Rate of Reaction
J. Phys. Chem. A,(119):11668 2015
Author:Tomohito Sudare, Tomonaga Ueno, Anyarat Watthanaphanit, Nagahiro Saito

Method of production of core/shell type nanoparticles, method of production of sintered body using that method, and thermoelectric conversion material produced by that method, EP2902136 B1 2017-01-04
Method and apparatus for producing core-shell type metal nanoparticles, EP2905095 B1 2017-01-25
Research Grants
Grants‐in‐aid for Scientific Research(Research Representative)
2019 - 2020 , 結晶性無機材料の低温結晶化合成に向けた金属アルコキシド支援液中プラズマ法の開発 , 若手研究

Other Research Grants
JST 平成30年度A-STEP 機能検証フェーズ 試験研究タイプ「硝酸性窒素を除去可能な小型浄水器への搭載に向けた多孔性無機吸着材の開発」
JST 平成29年度地域産学バリュープログラム「小型浄水器を対象とした超効率硝酸イオン吸着材の開発」
2019 - 2021 , 環境省 平成31年度環境研究総合推進費新規課題「硝酸イオンの効率的除去に向けた超高選択性無機アニオン交換体の開発」