AM1 AND PM3 SEMIEMPIRICAL CALCULATIONS ON 1-ARYL-3,3-DIETHYLTRIAZENES- CORRELATION OF BOND ORDERS WITH ROTATIONAL BARRIERS AND QUANTUM YIELDS OF PHOTOLYSIS
Jc. Panitz et al., AM1 AND PM3 SEMIEMPIRICAL CALCULATIONS ON 1-ARYL-3,3-DIETHYLTRIAZENES- CORRELATION OF BOND ORDERS WITH ROTATIONAL BARRIERS AND QUANTUM YIELDS OF PHOTOLYSIS, Journal of physical chemistry, 97(20), 1993, pp. 5246-5253
Molecular geometries, electronic transitions, bond orders, and dipole
moments are calculated for 19 1-aryl-3,3-diethyltriazenes and two 3-al
kyl-1,5-diarylpentazadienes, using standard AMI and PM3 semiempirical
methods. Calculated UV spectra compare well with the experimental resu
lts. A strong correlation is established between the barrier to intern
al rotation, DELTAG(double dagger), and the N2-N3 bond order. The phot
ochemical decomposition of substituted triazenes and pentazadienes is
of interest in view of their application as promoters in laser-induced
polymer ablation. Therefore, the photolysis quantum yields at 308 nm
are investigated in various solvents. The influence of substituents on
the aryl moiety on the quantum yield is analyzed in terms of a correl
ation with the calculated N1=N2 bond order. The effects of different n
itrogen-bound alkyl substituents on the photochemical decomposition be
havior can be represented by a similar correlation. Differences betwee
n the photolysis behavior of triazene and pentazadiene derivatives are
discussed.