Lesson at a Glance | He Tirohanga Whakamua
Ngā Whāinga Ako | Learning Intentions
Students will know
- The systematic 4-step IUPAC naming system (Prefix root: meth- to oct-; suffix for functional group; locant numbers for branches & functional group position).
- The definition of Structural Isomers: molecules with the same molecular formula but different structural arrangements of atoms.
- The distinction between Chain Isomers (variations in carbon backbone branching) and Positional Isomers (variations in locant position of the functional group).
Students will demonstrate
- By drawing and naming all structural isomers of and .
- By completing Section 2 of their Level 2 Organic Chemistry Mastery Portfolio.
Curriculum alignment
- NZC (2007) · Science · Level 7 · Material World: “Relate properties of matter to structure and bonding.”
Do Now | Tīmatanga Whakaaro (10 min)
Isomerism Prompt:
"If two bottles of gas in a chemistry lab both read on the label, but one boils at -0.5°C and the other boils at -11.7°C, how is that chemically possible?"
Unpack: They are structural isomers! Straight-chain butane () has greater surface area contact between molecules, leading to stronger intermolecular dispersion forces and a higher boiling point than branched 2-methylpropane ().
4-Step IUPAC Naming Algorithm (15 min)
Find the longest continuous carbon chain containing the main functional group. (1=meth, 2=eth, 3=prop, 4=but, 5=pent, 6=hex, 7=hept, 8=oct).
Number the carbons from the end that gives the primary functional group (e.g. ) the lowest possible locant number.
Identify methyl (), ethyl (), chloro (), bromo (), iodo (), and amino () groups with their locant numbers.
List substituents alphabetically (e.g. 2-bromo-3-methylpentane). Use di-, tri- prefixes if multiple identical groups exist.
Structural Isomerism (15 min)
Where this usually goes wrong: students count any redrawing as a new isomer. Rotating a bond on paper does not make a different compound — isomers must have the same molecular formula and a genuinely different connectivity.
Same formula, different carbon backbone. gives butane (a straight chain) and methylpropane (a branched one). Branching lowers the boiling point, because a more compact molecule has less surface contact with its neighbours.
Same skeleton, same functional group, different attachment point. gives propan-1-ol and propan-2-ol. The IUPAC locant number exists precisely to tell these apart, which is why naming and isomerism are one topic and not two.
Do this now: draw every chain isomer of . There are three. If you find a fourth, check whether you have merely rotated one you already have.
📁 Organic Chemistry Portfolio — Section 2: IUPAC Naming & Structural Isomers
Students open their Level 2 Chemistry Portfolio and complete Section 2:
Section 2 Requirements:
1. IUPAC Naming Practice: Draw structural formulas and provide systematic IUPAC names for 6 challenging molecules (e.g. 2,3-dichlorobutane, 3-methylbutan-2-ol, 2-methylpropanoic acid).
2. Structural Isomer Grid (): Draw and name all 4 haloalkane isomers: 1-chlorobutane, 2-chlorobutane (positional), 1-chloro-2-methylpropane, and 2-chloro-2-methylpropane (chain).
3. Excellence Isomer Distinction: 1-paragraph explanation of why 2-methylpropan-2-ol is a tertiary alcohol while its positional isomer butan-1-ol is a primary alcohol.
Exit Verification | Ka Mutu Hoki (5 min)
Exit Check:
"My Section 2 correctly identifies all 4 isomers of C₄H₉Cl and uses correct IUPAC hyphen/comma punctuation."
Teacher Planning & NCEA Alignment
NCEA Level 2 Chemistry Alignment (4 Credits External):
- IUPAC Nomenclature: Name and draw structural formulas for organic molecules up to 8 carbons in the main chain.
- Structural Isomerism: Draw and identify chain isomers and positional isomers.
Vocabulary: IUPAC nomenclature, prefix root, suffix, locant number, structural isomerism, chain isomer, positional isomer, branch chain.
Other teaching approach: Guided Viewing & Practical Chemistry →