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HOANGNAM HAI 研究業績一覧 (26件)
論文
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H. Monhemi,
H. N. Hoang,
D. M. Standley,
T. Matsuda,
M. R. Housaindokht.
The protein-stabilizing effects of TMAO in aqueous and non-aqueous conditions,
Aug. 2022.
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Y. Suzuki,
K. Taniguchi,
H. N. Hoang,
M. Tamura,
T. Matsuda.
Rate enhancement of lipase-catalyzed reaction using CO2-expanded liquids as solvents for chiral tetralol synthesis,
Tetrahedron Lett.,
153837,
May 2022.
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M. Otsu,
Y. Suzuki,
A. A. Koesoema,
H. N. Hoang,
M. Tamura,
TOMOKO MATSUDA.
CO2-expanded liquids as solvents to enhance activity of Pseudozyma antarctica lipase B towards ortho-substituted 1-phenylethanols,
Tetrahedron Lett.,
61,
42,
152424,
Oct. 2020.
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Hai Hoang,
Emanuel Granero-Fernandez,
Shinjiro Yamada,
Shuichi Mori,
Hiroyuki Kagechika,
Yaocihuatl Medina-Gonzalez,
TOMOKO MATSUDA.
Modulating Biocatalytic Activity toward Sterically Bulky Substrates in CO2-Expanded Biobased Liquids by Tuning the Physicochemical Properties,
ACS Sustainable Chemistry & Engineering,
ACS Publications,
Volume 5,
Number 11,
Page 11051–11059,
Nov. 2017.
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H. N. Hoang,
Y. Nagashima,
S. Mori,
H. Kagechika,
T. Matsuda.
CO2-expanded bio-based liquids as novel solvents for enantioselective biocatalysis,
Tetrahedron,
Apr. 2017.
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松田知子,
Hai Nam Hoang.
超臨界流体および液体二酸化炭素を用いる酵素による物質変換,
冷凍,
Feb. 2017.
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Hai Hoang,
TOMOKO MATSUDA.
Liquid carbon dioxide as an effective solvent for immobilized Candida antarctica lipase B catalyzed transesterification,
Tetrahedron Letters,
Vol. 56,
No. 4,
p. 639-641,
Jan. 2015.
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TOMOKO MATSUDA,
Hai Hoang.
Expanding substrate scope of lipase-catalyzed transesterification by the utilization of liquid carbon dioxide,
Tetrahedron,
2015.
著書
国際会議発表 (査読有り)
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Hai Nam Hoang,
Yuichi Suzuki,
Moeko Otsu,
Tomoko Matsuda.
Solvent Engineering for Biocatalytic Reactions: Harnessing the Power of CO2-Expanded Bio-based Liquids,
3rd Japan-Switzerland-Germany Workshop on Biocatalysis and Bioprocess Development,
Sept. 2023.
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Hai Hoang,
Tomoko Matsuda.
CO2-expanded bio-based liquids: Feasible media for biocatalysis of unexpected bulky compounds,
4th International Symposium on Green Chemistry (ISGC 2017),
May 2017.
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Hai Hoang,
tomoko matsuda.
Liquid carbon dioxide as an efficient solvent for enzyme-catalyzed reaction,
4th International Symposium on Green Chemistry (ISGC 2017),
May 2017.
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H. N. Hoang,
S. Mori,
Y. Nagashima,
H. Kagechika,
T. Matsuda.
Utilizing liquid CO2 as a superior solvent for biotransformation: Acceleration of lipase-catalytic activity toward sterically bulky substrates,
The Fifth International Conference on Cofactors (ICC-05) and Active Enzyme Molecule 2016 (AEM 2016),
Sept. 2016.
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Hai Hoang,
TOMOKO MATSUDA.
Expansion of substrate scope of Candida antarctica lipase B toward bulky phenylalkanols by liquid carbon dioxide,
Pacifichem2015,
Dec. 2015.
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Hai Hoang,
TOMOKO MATSUDA.
EXPANSION OF SUBSTRATE SPECIFICITY OF LIPASE-CATALYZED TRANSESTERIFICATION USING LIQUID CARBON DIOXIDE,
Biotrans2015,
July 2015.
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Hai Hoang,
tomoko matsuda.
Liquid carbon dioxide as an effective solvent for immobilized Candida antartica lipase B catalyzed transesterification,
Active Enzyme Molecule 2014,
Dec. 2014.
国内会議発表 (査読なし・不明)
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鈴木 優一,
谷口 航涼,
Hai Hoang,
松田 知子.
Candida antarctica Lipase B によるトランスエステル化におけるCO2膨張液体の影響,
第12回CSJ化学フェスタ,
Oct. 2022.
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鵜池竜大,
Suryadinata Henry,
Hoang Nam Hai,
松田知子.
超臨界二酸化炭素を用いたリパーゼによるエポキシ化反応の開発,
日本化学会 第100春季年会 (2020),
2PC- 148,
Mar. 2020.
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H. N. Hoang,
S YAMADA,
Y. Nagashima,
S. Mori,
H. Kagechika,
T. Matsuda.
CO2-expanded bio-based liquids as novel reaction media for lipase-catalyzed asymmetric acylation of bulky secondary alcohols,
Mar. 2017.
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Nam Hai HOANG,
; Shinjiro YAMADA,
; Yoshihiro NAGASHIMA,
; Shuichi MORI,
; Hiroyuki KAGECHIKA,
; Tomoko MATSUDA.
CO2-expanded bio-based liquids as novel reaction media for biocatalysis,
Mar. 2017.
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長島 由拡,
HOANG NAM HAI,
KOESOEMA AFIFA AYU,
松田知子.
動的速度論的光学分割反応に用いるラセミ化酵素の開発,
Dec. 2016.
その他の論文・著書など
学位論文
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Pressurized carbon dioxide in biocatalysis: Enhanced catalytic activity of lipase,
Thesis,
Doctor (Engineering),
Tokyo Institute of Technology,
2018/09/20,
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Pressurized carbon dioxide in biocatalysis: Enhanced catalytic activity of lipase,
Summary,
Doctor (Engineering),
Tokyo Institute of Technology,
2018/09/20,
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高圧二酸化炭素中での生体触媒反応:リパーゼの触媒活性の向上,
要約,
博士(工学),
東京工業大学,
2018/09/20,
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Pressurized carbon dioxide in biocatalysis: Enhanced catalytic activity of lipase,
Exam Summary,
Doctor (Engineering),
Tokyo Institute of Technology,
2018/09/20,
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