INTRAMOLECULAR CHELATION AS A FACTOR IN THE STEREOCHEMISTRY OF ANIONIC VINYL POLYMERIZATION

Citation
Te. Hogenesch et C. Meverden, INTRAMOLECULAR CHELATION AS A FACTOR IN THE STEREOCHEMISTRY OF ANIONIC VINYL POLYMERIZATION, Macromolecular symposia, 88, 1994, pp. 35-53
Citations number
24
Categorie Soggetti
Polymer Sciences
Journal title
ISSN journal
10221360
Volume
88
Year of publication
1994
Pages
35 - 53
Database
ISI
SICI code
1022-1360(1994)88:<35:ICAAFI>2.0.ZU;2-V
Abstract
The methylation (CH3I) of 1,3-bis(2-pyridyl)butyllithium in THF at -78 -degrees-C is highly meso-selective (>98%) but the selectivity decreas es with increasing cation-size or -coordination. The reaction of 1,3-b is(2-pyridyl)butyllithium with other electrophiles such as i-C3H7Br, P hCH2Cl, Me3SiCl (CD3)2CO and 4-vinylpyridine is also stereoselective u nder these conditions giving meso-like products. On the other hand, ad dition of 2-vinylpyridine is only slightly selective (64%) and this is consistent with the 65% meso content of P2VP formed by polymerization in the presence of Li ion. The chemistry of the above reactions is ra tionalized by intramolecular coordination of Li or other cations by th e penultimate 2-pyridyl group and this is supported by equilibria invo lving proton abstraction of 1,3-bis(2-pyridyl)butane and similar compo unds by bases having Li, Na or K counterions. It is shown that the ten dency for intramolecular chelation is highest for Li and lowest for K ion. Temperature dependence of the above equilibrium shows that intram olecular chelation of Li and Na ions is exothermic (-1.4 and -1.3 kcal respectively) whereas the DELTAH for K ion is very small (-0.5 kcal). Entropies of chelation are slightly positive for Li (0.8 e.u.) and ne gative for Na and K ions (-2.60 and -0.40 e.u. respectively). The lack of stereoregular polymerization of 2-VP in the presence of Li ion is most likely due to the requirement that the Li ion of the newly formed 2-pyridyl anion is coordinated with the 2-pyridyl group of the previo us asymmetric center. Thus it would appear that intramolecular coordin ation of metal ion by penultimate 2-pyridine does not necessarily lead to isotactic-polymerization.