What this standard actually asks for
How this standard is assessed
- AS91388 is internally assessed: you are given spectra and asked to identify aspects of, determine, or justify a structure.
- The scope is unusually tightly defined, which is good news — there is a finite list of things you can be asked.
The three techniques, and only these three
| Technique | What it measures | What it tells you |
|---|---|---|
| Mass spectrometry | mass-to-charge ratio of ions | molar mass; presence of N, Cl or Br; fragments |
| Infrared (IR) | absorption of infrared radiation by vibrating bonds | which functional groups are present |
| 13C NMR | the environment of each carbon nucleus | how many different carbon environments, and what kind |
- There is no 1H NMR in this standard. EN3 restricts NMR to carbon-13.
The molecules you may be asked about
Eleven families, and no others:
-
alkanes, alkenes — the hydrocarbons
-
alcohols, haloalkanes, amines — one heteroatom, no carbonyl
-
aldehydes, ketones, carboxylic acids, esters, amides, acid chlorides — the carbonyl families
-
Being able to list these is genuinely useful, because it bounds the answer. If your data is consistent with something outside this list, re-check the data.
The aspects of structure
EN5 limits you to three:
-
Molar mass and molecular formula
-
Functional groups
-
The carbon framework, including structural isomers
-
Structural isomers is where most of the difficulty lives. Two isomers have the same molar mass and often the same functional group, so distinguishing them is what 13C NMR is for.
The grades, in practice
- Achieved — identify discrete aspects. Each answer is a single fact read from a single spectrum.
- "The molecular ion peak is at m/z 74, so the molar mass is 74 g mol−1."
- "The broad absorption at 3300 cm−1 indicates an O–H group."
- "There are three signals, so there are three carbon environments."
- Merit — determine the structure. You combine the facts into a structure and explain the reasoning at each step.
- Excellence — justify by integrating. You show the three techniques agree, and you explicitly eliminate the structures that would also have fitted some of the data.
What "integrating" means
- Not "I used all three spectra".
- It means showing that the evidence converges: each technique narrows the possibilities, and the surviving structure is consistent with all of them simultaneously.
- The clearest signal that you are integrating is that you can say why the alternative isomer is ruled out, and by which piece of data.