SN1 vs SN2 vs E1 vs E2: how to tell them apart
Check four things in order: substrate, nucleophile or base, solvent, then heat. That sequence eliminates most of the four pathways before you draw a single arrow.
What each path actually is
- SN2: Concerted substitution. Nucleophile attacks as the leaving group leaves. Rate depends on substrate and nucleophile. Stereochemical hallmark: inversion.
- SN1: Leaving group leaves first; a carbocation forms; nucleophile attacks. Rate depends mainly on the substrate. Racemization is common; rearrangements are possible.
- E2: Concerted elimination. A base takes a β-hydrogen as the leaving group leaves. Needs an anti-periplanar hydrogen. Heat and strong bases help.
- E1: Carbocation, then loss of a β-hydrogen. Shares SN1’s first step. Heat and weak bases in protic solvent push toward E1 over SN1.
Step-by-step decision order
1. Substrate
Methyl and unhindered primary: cross off SN1 and E1 (the carbocation would be miserable). Tertiary: cross off SN2 (backside attack is blocked). Secondary, allylic, and benzylic can go either way — keep reading.
2. Nucleophile vs base
Strong nucleophile / weak base (I⁻, CN⁻, RS⁻): substitution. Strong bulky base (t-BuOK): elimination. Strong base that is also a good nucleophile (HO⁻, RO⁻): primary → SN2, tertiary → E2, secondary → mixture unless heat or bulk says otherwise. Weak (H₂O, ROH): you need a decent carbocation, so SN1/E1 territory.
3. Solvent
Polar aprotic (DMSO, DMF, acetone): SN2. Polar protic (water, methanol, ethanol): SN1/E1.
4. Heat
If the problem shows heat or Δ, shift from substitution toward elimination (SN2 → E2, SN1 → E1).
Useful tips
- SN2 never rearranges. If the carbon skeleton changed, you were in carbocation land (SN1/E1).
- A single stereoisomer with inversion is a gift-wrapped SN2. A racemic mix at the reacting carbon is SN1-like.
- E2 on a cyclohexane needs the leaving group axial, anti to the hydrogen you take.
Common mistakes
- Calling a tertiary alkyl halide SN2 because the nucleophile is strong.
- Forgetting that heat was written on the arrow.
- Mixing up “strong nucleophile” and “strong bulky base.”
- Drawing E2 without checking for a β-hydrogen.
How Organic Chemistry AI helps
When you scan or type a substitution/elimination problem, Organic Chemistry AI names the reaction type — SN1, SN2, E1, E2, and more — and walks the steps with the product highlighted. That is a check against your decision order, not a replacement for learning it. Flashcards cover substitution and elimination, and quizzes practice reaction naming. Those quizzes work offline.
FAQ
How do I tell SN1 from SN2?
Substrate first, then nucleophile and solvent. Primary + strong Nu + polar aprotic = SN2. Tertiary + weak Nu + polar protic = SN1. Secondary depends on those conditions.
When is E2 more likely than SN2?
Bulky bases and heat favor E2. Good nucleophiles that are weak bases favor SN2 on open substrates.