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Preparation of thermally stable enzyme with high dispersion stability
Hiroko Ishikawa
, Michihiro Iijima
,
Keishi Nishio
, Motoi Oishi
, Yukio Nagasaki
Department of Materials Science and Technology
Research output
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Contribution to conference
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Paper
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peer-review
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Keyphrases
Aqueous Media
33%
Biomedical Materials
33%
Block Copolymer
33%
Dispersion Stability
33%
Enzymatic Activity
33%
Free Lipase
33%
High Dispersion Stability
100%
Lipase
100%
Lyophilization
33%
Oligocations
66%
Silica Colloid
100%
Stable Enzyme
100%
Tethered Chains
33%
Thermal Stability
33%
Thermal Treatment
33%
Thermally Stable
100%
Chemistry
Block Copolymer
33%
Enzyme Activity
33%
Heat Treatment
33%
Poly(ethylene Glycol)
100%
Polycationic Polymer
66%
Silicon Dioxide
100%
stability
100%
Thermal Stability
33%
Biochemistry, Genetics and Molecular Biology
Dispersion
100%
Enzyme
100%
Enzyme Activity
25%
Pancreatic Lipase
100%
Thermostability
25%
Triacylglycerol Lipase
100%
Material Science
Biomedical Materials
25%
Block Copolymer
25%
Enzyme Activity
25%
Lipase
100%
Polyethylene Glycol
75%
Silicon Dioxide
75%
Thermal Stability
25%
Chemical Engineering
Block Copolymer
33%
Colloid
100%
Polyethylene Glycol
100%
Immunology and Microbiology
Dispersion
100%
Enzyme Activity
50%
Thermostability
50%