TY - JOUR
T1 - Density Functional Study of the Ground and Excited State Potential Energy Surfaces of a Light-Driven Rotary Molecular Motor (3R,3 ' R)-(P,P)-trans-1,1 ',2,2 ',3,3 ',4,4 '-Octahydro-3,3 '-dimethyl-4,4 '-biphenanthrylidene
AU - Kazaryan, Andranik
AU - Filatov, Michael
PY - 2009/10/29
Y1 - 2009/10/29
N2 - Potential energy surfaces of the ground and the first excited singlet states of the (3R,3'R)-(P,P)-trans-1,1',2,2',3,3',4,4'-octahydro-3,3'-dimethyl-4,4'-biphenanthrylidene rotary molecular motor have been investigated along the central C(4)=C(4), double bond twisting mode starting from the (P,P)-trans and from the (P,P)-cis conformations occurring in the photoisomerization cycle of this compound. The potential energy profiles obtained with the help of the state average spin restricted ensemble-referenced Kohn-Sham (SA-REKS) method feature minima on the excited state surface, the positions of which are displaced with respect to the barriers on the ground state surface toward the isomerization products, the (M,M)-cis and the (M,M)-trans conformations, respectively. The origin of these minima is analyzed and explained. The results of the present study suggest that the experimentally observed unidirectionality of photoinduced rotation in the above compound can be corroborated by the obtained profiles of the ground and excited state potential energy surfaces.
AB - Potential energy surfaces of the ground and the first excited singlet states of the (3R,3'R)-(P,P)-trans-1,1',2,2',3,3',4,4'-octahydro-3,3'-dimethyl-4,4'-biphenanthrylidene rotary molecular motor have been investigated along the central C(4)=C(4), double bond twisting mode starting from the (P,P)-trans and from the (P,P)-cis conformations occurring in the photoisomerization cycle of this compound. The potential energy profiles obtained with the help of the state average spin restricted ensemble-referenced Kohn-Sham (SA-REKS) method feature minima on the excited state surface, the positions of which are displaced with respect to the barriers on the ground state surface toward the isomerization products, the (M,M)-cis and the (M,M)-trans conformations, respectively. The origin of these minima is analyzed and explained. The results of the present study suggest that the experimentally observed unidirectionality of photoinduced rotation in the above compound can be corroborated by the obtained profiles of the ground and excited state potential energy surfaces.
KW - KOHN-SHAM METHOD
KW - CONICAL INTERSECTIONS
KW - ORBITAL METHODS
KW - ISOMERIZATION
KW - DYNAMICS
KW - ROTORS
U2 - 10.1021/jp902389j
DO - 10.1021/jp902389j
M3 - Article
SN - 1089-5639
VL - 113
SP - 11630
EP - 11634
JO - The Journal of Physical Chemistry A
JF - The Journal of Physical Chemistry A
IS - 43
ER -