Hi Labman,
You are correct that tertiary hydrogens are the least stable, but there are actually fewer of them in PAOs than mineral oils. Group II and III base oils are full of multi-branched hydrocarbons which have a tertiary hydrogen opposite each branch. The trimer of 1-decene (4 cSt PAO) only has two tertiary hydrogens. Straight chain hydrocarbons are indeed the most stable but these are refined out as waxes. Some base oil oxidation discussion is here:
http://www.oilanalysis.com/article_detail.asp?articleid=475&relatedbookgroup=OilAnalysis
Neopentyl polyol esters (POEs) are very oxidatively stable, much better than PAOs. POEs made from straight chain acids have no tertiary hydrogens and no beta hydrogens on the alcohol. In addition, the secondary hydrogens next to the carbonyl are about six times more stable than the secondaries down the chain.
In fact, certain
branched acid POEs are much more stable than the straight chain acid types. For example, 3,5,5, trimethylhexanoic acid has four primary carbons with three primary hydrogens each, thus substantially reducing the number of secondary hydrogens. These primaries are about 17 times more stable than the secondaries they replace, which overcomes the single tertiary they contain. So the branched C9 acid above has 12 primary hydrogens, 2 regular secondaries, 2 stable secondaries, and 1 tertiary, while a linear C9 acid has 3 primaries and 12 regular secondaries, and 2 stable secondaries. The triple branched acid may also benefit from steric hindrance protecting its regular secondaries. This improved oxidative stability and reduced coking tendencies from certain multi-branched acids is the subject of two of my patents (
http://www.freepatentsonline.com/5503761.html and
http://www.boliven.com/patent/US20030104956)
2-Ethylhexanoic acid has one branch which gives it only three more primary hydrogens compared to the linear octanoic, but one tertiary. While this does not seem much of an improvement, POEs made from 2-EH acid do test more oxidatively stable. They are also much more hydrolytically stable because the branch is on the alpha carbon, which sterically hinders the ester linkage from attack by water.
Tom NJ