Open-Shell Formulation of the Fragment Molecular Orbital Method
Spencer R. Pruitt, Dmitri G. Fedorov, Kazuo Kitaura, Mark S. Gordon
Abstract
Spencer R. Pruitt, Dmitri G. Fedorov, Kazuo Kitaura, Mark S. Gordon
Abstract
Performing accurate calculations on large molecular systems is desirable for closed- and open-shell systems. In this work, the fragment molecular orbital method is extended to open-shell systems and implemented in the GAMESS (General Atomic and Molecular Electronic Structure System) program package. The accuracy of the method is tested, and the ability to reproduce reaction enthalpies is demonstrated. These tests also demonstrate its utility in providing an efficient means to model large open-shell systems.
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Performing accurate calculations on large molecular systems is desirable for closed- and open-shell systems. In this work, the fragment molecular orbital method is extended to open-shell systems and implemented in the GAMESS (General Atomic and Molecular Electronic Structure System) program package. The accuracy of the method is tested, and the ability to reproduce reaction enthalpies is demonstrated. These tests also demonstrate its utility in providing an efficient means to model large open-shell systems.
Key concepts: Open shell, Fragment molecular orbital, Fragment (logic), Shell (structure), Molecular orbital, Atomic charge, Computer science, Molecular dynamics