Photodissociation and electronic spectroscopy of [Re(H)(CO)(3)(H-dab)] (H-dab=1,4-diaza-1,3-butadiene): quantum wavepacket dynamics based on ab initio potentials

Chemistry : a European Journal
Isabelle Bruand-Cote, Chantal Daniel

Abstract

The photodissociation dynamics of [Re(H)(CO)(3)(H-dab)] (H-dab=1,4-diaza-1,3-butadiene) were studied by means of wavepacket propagations on CASSCF/MR-CCI potentials calculated for the electronic ground state and low-lying excited states as a function of two coordinates, q(a) and q(b), that correspond to the Re-H bond homolysis and to the axial CO loss, respectively. The theoretical absorption spectrum is characterized by two bands, one intense peak centered at lambda=500 nm (21,000 cm(-1)) and one broad band centered at 310 nm (32,500 cm(-1)). The visible band was assigned to the low-lying metal-to-ligand charge-transfer (MLCT) states with a main contribution of the a(1)A'-->c(1)A' transition corresponding to the 3d(xz)-->pi*(dab) excitation. The second band calculated in the UV energy domain was assigned to the d(1)A' (sigma(Mn-H)-->pi*(dab)) state corresponding to a sigma-bond-to-ligand charge-transfer (SBLCT) state. The photodissociation dynamics of the low-lying (1)MLCT and (3)SBLCT states following irradiation in the visible energy domain was simulated by wavepacket propagation on the two-dimensional diabatic potentials V(q(a), q(b)) coupled by the spin-orbit. In contrast to what was found for the manganese analogue, the (...Continue Reading

Citations

Aug 19, 2006·Journal of Computational Chemistry·Leticia González, Chantal Daniel
Oct 11, 2014·Physical Chemistry Chemical Physics : PCCP·Martin RichterLeticia González
Nov 18, 2015·Journal of Chemical Theory and Computation·Christophe GourlaouenChantal Daniel
Oct 17, 2019·Dalton Transactions : an International Journal of Inorganic Chemistry·Alyssa A WebsterJohn O Hoberg
Sep 2, 2021·JACS Au·J Patrick Zobel, Leticia González

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