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- W2149805586 abstract "Optimization in the normal mode coordinates has been established as a useful tool for modeling of vibrational spectra ( J. Chem. Phys . 2002 , 117 , 4126). In this work the algorithm is extended with the aid of harmonic penalty functions to allow for multiple restraints of geometry parameters, such as bond lengths, bond and dihedral angles, and for simultaneous optimization of more molecules. Additionally, geometry optimization when atomic nuclei are maintained on the constant electrostatic potential surface was implemented and its applications for solvent models are discussed. Model systems include small molecules, water cluster, antiparallel β-sheet peptide containing intermolecular hydrogen bonds, periodic α-helix and a parallel β-sheet segments. The normal mode method provided better numerical stability than the conventional redundant internal coordinates, especially for weakly hydrogen-bonded systems, while the speed of the optimization was found similar as for the Cartesian coordinates." @default.
- W2149805586 created "2016-06-24" @default.
- W2149805586 creator A5067364493 @default.
- W2149805586 date "2005-01-01" @default.
- W2149805586 modified "2023-10-01" @default.
- W2149805586 title "Convergence Properties of the Normal Mode Optimization and Its Combination with Molecular Geometry Constraints" @default.
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- W2149805586 doi "https://doi.org/10.1135/cccc20051315" @default.
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