Chemistry · Ch 3 — Chemical Kinetics
Order of a Reaction
Order of a Reaction
Defining order
In the general rate law
the exponents and describe how sensitive the rate is to a change in the concentration of and of individually — is the order of the reaction with respect to , and the order with respect to . Their sum, , is the overall order of the reaction:
The sum of the powers of the concentration terms in the rate law expression is called the order of that chemical reaction.
Order is not restricted to whole numbers — it can be , , , , or even a fraction. A zero-order reaction is one whose rate does not change with the concentration of the reactants at all.
Why order needs a mechanism behind it
A balanced chemical equation is really just an accounting statement of reactants and products; it almost never shows what actually happens step by step, because most reactions do not go to completion in a single step. A reaction that does occur in one single step is called an elementary reaction. When a reaction instead proceeds through a sequence of elementary reactions — called its mechanism — before yielding the final products, it is called a complex reaction.
Two everyday patterns illustrate this:
- Consecutive reactions — for example, the oxidation of ethane to CO₂ and H₂O does not happen in one leap; it passes through a series of intermediate stages in which alcohol, then an aldehyde, and then an acid are formed along the way.
- Reverse and side reactions — for example, nitration of phenol does not give a single clean product; it yields both ortho-nitrophenol and para-nitrophenol side by side.
The units of the rate constant
For the general reaction with rate law and overall order , the rate constant can be isolated as
…
| Reaction | Order | Units of rate constant |
|---|---|---|
| Zero order reaction | 0 | |
| First order reaction | 1 |