Reaction Mechanisms, Catalysts & Reaction Coordinate Diagrams

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Reaction Mechanisms
Catalysts & Intermediates
Rate Laws & Slow Step
Slow Step Analysis
Catalyst Fundamentals
Reaction Diagrams
Analyzing Diagrams

Reaction Mechanisms

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    Reaction mechanisms consist of a sequence of elementary steps.

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    Elementary reactions are classified as unimolecular, bimolecular, or termolecular.

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    Mechanisms are used to determine the overall balanced reaction.

Understanding of chemical kinetics basics, including how reaction rates are defined and measured.
Collision Theory, which explains that reactant particles must collide with sufficient energy and correct orientation to react.
Differentiating between exothermic and endothermic reactions and understanding the concept of enthalpy change (Delta H).
Familiarity with writing and balancing chemical equations and interpreting stoichiometry.
Deriving overall rate laws from multi-step reaction mechanisms by identifying the Rate-Determining Step (RDS).
Applying the Arrhenius Equation to mathematically relate reaction rates, temperature, and activation energy.
Studying advanced catalytic systems, including homogeneous vs. heterogeneous catalysts and biological enzymes (Michaelis-Menten kinetics).
Analyzing transition states and intermediates at a molecular orbital level using Transition State Theory.
Using the Steady-State Approximation to solve complex reaction mechanisms where no single step is clearly rate-determining.
89.7K views2.4Klikes36:56@ChadsPrepOriginal Release: 2022-01-19

Reaction mechanisms are sequences of elementary steps (unimolecular, bimolecular, or termolecular) that compose a chemical reaction; the slowest step (rate-determining step) controls the overall reaction rate, and if it's the first step, its rate law directly gives the overall rate law, but if it's the second step, the intermediate must be eliminated using the rapid equilibrium approximation. Catalysts speed up reactions by providing an alternate pathway with lower activation energy without being consumed or shifting equilibrium. Reaction coordinate diagrams show energy versus reaction progress, displaying activation energy barriers, transition states (which cannot be isolated), intermediates (which can be isolated), and whether a reaction is endothermic or exothermic based on the relative energies of reactants and products.