Mt. Allen et al., Intermolecular organisation of triphenylene-based discotic mesogens by interdigitation of alkyl chains, J MAT CHEM, 11(2), 2001, pp. 302-311
Two series of hexakis(alkyloxy)triphenylenes have been synthesised and char
acterised. All materials contain two different lengths of n-alkyloxy chains
. Series I (CmCn) materials contain three -OC5H11 chains and three -OCnH2n
+ 1 chains. Series II (CmCn) materials contain three -OCmH2m + 1 chains and
three -OCnH2n + 1 chains, such that m + n = 10. Hexagonal columnar mesopha
ses are observed in Series I for n greater than or equal to 3 and, in Serie
s II, for C5C5 and C6C4. Investigation by XRD shows that, within Series I,
increasing the C-n chain length increases the intercolumnar spacing. Furthe
rmore, the intercolumnar spacings for constitutional isomers are identical.
The difference in the lengths of the two types of alkyl chain at the perip
hery of the molecules is defined as the Interdigitation Length (IL) and is
a measure of the maximum extent of interdigitation that is possible between
neighbouring molecules. Series I and II materials have been studied to pro
be the effect of IL on the change in enthalpy (DeltaH(Col-I)) and entropy (
DeltaS(Col-I)) for the mesophase to isotropic liquid phase transition. In c
ontrast to CxCx materials, which show a decrease in DeltaH(Col-I) and Delta
S(Col-I) with increasing chain length, Series I and II mesogens all exhibit
DeltaH(Col-I) and DeltaS(Col-I) values similar to those of long chain CxCx
materials, irrespective of chain length.