Q.What is meant by the conjugate acid-base pair? Find the conjugate acid/base for the following species: HNO2, CN–, HClO4, F–, OH–, CO₃²–, and S2–.
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Start your 14-day free trial to unlock the full solution →A conjugate acid-base pair differs by exactly one proton (). For each given species, removing a proton gives its conjugate base; adding a proton gives its conjugate acid. The results are: (conjugate base ), (conjugate acid ), (conjugate base ), (conjugate acid ), (conjugate acid and conjugate base ), (conjugate acid ), (conjugate acid ).
The Core Idea: One Proton, That’s All
The Brønsted–Lowry theory defines an acid as a proton () donor and a base as a proton acceptor. This leads to a beautifully simple relationship: when an acid donates a proton, what remains is its conjugate base. When a base accepts a proton, what forms is its conjugate acid. The original and the product together form a conjugate acid-base pair — two species that differ by exactly one proton.
Think of it as a chemical handshake: the acid passes a proton to the base. After the handshake, the acid becomes a base (it can now accept a proton back), and the base becomes an acid (it can now donate that proton). Every acid has a conjugate base; every base has a conjugate acid.
For any species (acid):
is the conjugate base of .
For any species (base):
is the conjugate acid of .
Step-by-Step: Finding Conjugate Partners
We’ll go through each species one by one. The rule is simple:
- If the species can donate a proton (it has an to give), remove to get its conjugate base.
- If the species can accept a proton (it has a lone pair or negative charge), add to get its conjugate acid.
- Some species (like ) can do both — we’ll handle that carefully.
1. (Nitrous acid)
This is clearly an acid — it has a hydrogen that can be donated. Remove :
The species left is (nitrite ion). So the conjugate base of is .
Notice that the charge changes by when you remove (since has a charge). This is a quick check: if the original is neutral, the conjugate base will have a charge.
2. (Cyanide ion)
This is a base — it has a negative charge and can accept a proton. Add :
The product is (hydrogen cyanide). So the conjugate acid of is .
3. (Perchloric acid)
A strong acid — it readily donates its proton. Remove :
The conjugate base is (perchlorate ion).
4. (Fluoride ion)
A base — it can accept a proton to form . Add :
The conjugate acid is (hydrofluoric acid).
A common mistake is to think could also act as an acid. But fluorine is highly electronegative and holds its electrons tightly — it does not donate a proton because it has no hydrogen to give. So only the conjugate acid is relevant here.
5. (Hydroxide ion)
This is interesting. is famously a base — it accepts a proton to become water:
So its conjugate acid is .
But can also act as an acid? Yes — in principle, it can donate a proton (though it’s a very weak acid). If we remove from : …
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