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The enhancement of electrostriction caused by lowering the solvent dielectric constant leads to the decrease of activation energy in trypsin catalysis
H. Park
, Min Chi Young Min Chi
Research output
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Contribution to journal
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Article
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peer-review
6
Citations (Scopus)
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Dive into the research topics of 'The enhancement of electrostriction caused by lowering the solvent dielectric constant leads to the decrease of activation energy in trypsin catalysis'. Together they form a unique fingerprint.
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Keyphrases
Activation Energy
100%
Transition State
100%
Trypsin
100%
Solvents Dielectric Constant
100%
Electrostriction
100%
Dielectric Constant
75%
Catalytic Efficiency
50%
High Pressure
25%
Kinetic Study
25%
Kcat
25%
Negatively Charged
25%
Activation Free Energy
25%
Catalyzed Reaction
25%
Activation Volume
25%
Oxyanion Hole
25%
Electrostatic Energy
25%
Chemistry
Reaction Activation Energy
100%
Dielectric Constant
100%
Electrostriction
100%
Permittivity
100%
Transition State
57%
Catalysis
14%
Free Energy of Activation
14%
Kinetic Study
14%
Oxyanion
14%
Activation Volume
14%
Electrostatic Force
14%
Kcat
14%
formation
14%
Material Science
Activation Energy
100%
Permittivity
100%
Catalysis
100%
Electrostriction
100%
Biochemistry, Genetics and Molecular Biology
Dielectric Constant
100%
Catalytic Efficiency
28%
Static Electricity
14%
Turnover Number
14%
Oxyanion Hole
14%