Title of article :
Excited state geometry optimizations by time-dependent density functional theory based on the fragment molecular orbital method
Author/Authors :
Chiba، نويسنده , , Mahito and Fedorov، نويسنده , , Dmitri G. and Nagata، نويسنده , , Takeshi and Kitaura، نويسنده , , Kazuo، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
6
From page :
227
To page :
232
Abstract :
The energy gradient method is introduced to the fragment molecular orbital based time-dependent density functional theory (FMO-TDDFT), which we have recently developed to calculate excitation energies of large systems by dividing them into fragments. By using the energy gradient of FMO-TDDFT, excited state geometry optimizations of a polypeptide and solvated formaldehyde are carried out using the LC-BOP functional and the 6-31G∗ basis set. The accuracy of the optimized structures and the excitation energies in comparison to conventional TDDFT is discussed.
Journal title :
Chemical Physics Letters
Serial Year :
2009
Journal title :
Chemical Physics Letters
Record number :
1926587
Link To Document :
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