Ab Initio Modeling of the Electronic Absorption Spectrum of Previtamin D in Solution

<p> To study the solvent effects of water on the previtamin D absorption spectrum, we use the quantum mechanics (QM)/molecular mechanics (MM) method combined with replica-exchange molecular dynamics (REMD). The QM method is applied for the previtamin D molecule and the MM method is used for th...

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Main Author: Zhu, Tianyang
Language:EN
Published: California State University, Long Beach 2017
Subjects:
Online Access:http://pqdtopen.proquest.com/#viewpdf?dispub=10265071
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spelling ndltd-PROQUEST-oai-pqdtoai.proquest.com-102650712017-06-23T16:07:14Z Ab Initio Modeling of the Electronic Absorption Spectrum of Previtamin D in Solution Zhu, Tianyang Physics <p> To study the solvent effects of water on the previtamin D absorption spectrum, we use the quantum mechanics (QM)/molecular mechanics (MM) method combined with replica-exchange molecular dynamics (REMD). The QM method is applied for the previtamin D molecule and the MM method is used for the water molecules. To enhance conformational sampling of the flexible previtamin D molecule we apply REMD. </p><p> Based on the REMD structures, we calculate the macroscopic ensemble of the absorption spectrum in solution by time-dependent density functional theory (TDDFT). Comparison between the calculated spectrum in the gas phase and in the solution reveals minor influences of the solvent on the absorption spectrum. In the conventional molecule dynamics simulation, the previtamin D molecule can be trapped by local minimum and cannot overcome energetics barriers when it is calculated at the room temperature. In addition, the higher temperature calculation for the molecule in REMD allows to overcome energetics barriers and to change the structure to other rotational isomers, then switch to the lower temperature and gives a more complete result in the configuration space for the lower temperature.</p> California State University, Long Beach 2017-06-22 00:00:00.0 thesis http://pqdtopen.proquest.com/#viewpdf?dispub=10265071 EN
collection NDLTD
language EN
sources NDLTD
topic Physics
spellingShingle Physics
Zhu, Tianyang
Ab Initio Modeling of the Electronic Absorption Spectrum of Previtamin D in Solution
description <p> To study the solvent effects of water on the previtamin D absorption spectrum, we use the quantum mechanics (QM)/molecular mechanics (MM) method combined with replica-exchange molecular dynamics (REMD). The QM method is applied for the previtamin D molecule and the MM method is used for the water molecules. To enhance conformational sampling of the flexible previtamin D molecule we apply REMD. </p><p> Based on the REMD structures, we calculate the macroscopic ensemble of the absorption spectrum in solution by time-dependent density functional theory (TDDFT). Comparison between the calculated spectrum in the gas phase and in the solution reveals minor influences of the solvent on the absorption spectrum. In the conventional molecule dynamics simulation, the previtamin D molecule can be trapped by local minimum and cannot overcome energetics barriers when it is calculated at the room temperature. In addition, the higher temperature calculation for the molecule in REMD allows to overcome energetics barriers and to change the structure to other rotational isomers, then switch to the lower temperature and gives a more complete result in the configuration space for the lower temperature.</p>
author Zhu, Tianyang
author_facet Zhu, Tianyang
author_sort Zhu, Tianyang
title Ab Initio Modeling of the Electronic Absorption Spectrum of Previtamin D in Solution
title_short Ab Initio Modeling of the Electronic Absorption Spectrum of Previtamin D in Solution
title_full Ab Initio Modeling of the Electronic Absorption Spectrum of Previtamin D in Solution
title_fullStr Ab Initio Modeling of the Electronic Absorption Spectrum of Previtamin D in Solution
title_full_unstemmed Ab Initio Modeling of the Electronic Absorption Spectrum of Previtamin D in Solution
title_sort ab initio modeling of the electronic absorption spectrum of previtamin d in solution
publisher California State University, Long Beach
publishDate 2017
url http://pqdtopen.proquest.com/#viewpdf?dispub=10265071
work_keys_str_mv AT zhutianyang abinitiomodelingoftheelectronicabsorptionspectrumofprevitamindinsolution
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