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How to conceptualize catalytic cycles? the energetic Span model
Sebastian Kozuch
, Sason Shaik
Research output
:
Contribution to journal
›
Article
›
peer-review
1415
Scopus citations
Overview
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Keyphrases
Apparent Activation Energy
12%
Arrhenius
12%
Catalytic Cycle
100%
Chemical Potential
12%
Chemical Resistance
12%
Computational Study
12%
Curtin-Hammett Principle
12%
Energetic Span
25%
Energetic Span Model
100%
Energy Difference
25%
Energy Profile
12%
Equivalent Representations
12%
Eyring
25%
Frequency Control
12%
Intermediate Energy
12%
Kinetic Data
12%
Ohm's Law
12%
Organometallic Reactions
12%
Physical Organic Chemistry
12%
Potential Independent
12%
Product Concentration
12%
Rate-determining Step
25%
Reactant Concentration
12%
Reaction Driving Force
12%
Reaction Steps
12%
Reactivity Coefficients
12%
State Energy
12%
Steady-state Regime
12%
Structure-activity
12%
Transition State
87%
Transition State Theory
25%
Turnover Frequency
100%
Two-state
12%
Chemistry
Chemical Potential
12%
Chemical Resistance
12%
Energetics
100%
Organometallic Reaction
12%
Physical Organic Chemistry
12%
Rate Constant
12%
Rate-Determining Step
12%
Reaction Activation Energy
12%
Reaction Step
12%
Transition State
87%
Transition State Theory
25%
Turnover Frequency
100%
Material Science
Activation Energy
100%
Catalysis
100%
Chemical Resistance
100%
Chemical Engineering
Chemical Potential
100%
Organometallics
100%
Biochemistry, Genetics and Molecular Biology
Drug Resistance
16%
Energy Transfer
100%
Steady State
16%