3.1.3—Amphiprotic species
- Syllabus
- First assessment 2025
- Objective
- 3.1.3
- Level
- HL
An amphiprotic species can donate H+ in one reaction and accept H+ in another.
Write one equation in which the species becomes its conjugate base and another in which it becomes its conjugate acid.
For HCO₃⁻, donation gives CO₃²⁻ whereas acceptance gives H₂CO₃. Showing both reactions is the evidence for amphiprotic behaviour; one acid–base equation alone is insufficient.
Representative question
Formulate two equations to show the amphiprotic nature of H2PO4−.
H2PO4−(aq)+H+(aq)→H3PO4(aq)H2PO4−(aq)+OH−(aq)→HPO42−(aq)+H2O(l)
Accept reactions of H2PO4− with any acidic, basic or amphiprotic species, such as H3O+, NH3 or H2O.
Accept:
H2PO4−(aq)→HPO42−(aq)+H+(aq)
for M2.
Retrieve the route: track proton transfer and conjugates, calculate pH and Kw, distinguish strength, balance neutralization, read titration curves, use Ka/Kb and hydrolysis, select indicators, and explain and calculate buffer behaviour.
Check donor versus acceptor, one-proton differences, logarithm direction, ion comparison, strength versus concentration, equivalence versus endpoint, pKa landmarks, conjugate equations and dilution ratios.