Luminescence properties of flexible conjugated dyes

In this licentiate thesis the luminescence properties of two flexible conjugated dyes have been studied. The first, Pt1, is a platinum(II) acetylide chromophore used in optical power limiting materials. The second is a set of optical probes known as luminescent conjugated oligothiophenes (LCOs), whi...

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Main Author: Sjöqvist, Jonas
Format: Others
Language:English
Published: Linköpings universitet, Beräkningsfysik 2012
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-75191
http://nbn-resolving.de/urn:isbn:978-91-7519-948-1
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spelling ndltd-UPSALLA1-oai-DiVA.org-liu-751912019-12-20T03:39:15ZLuminescence properties of flexible conjugated dyesengSjöqvist, JonasLinköpings universitet, BeräkningsfysikLinköpings universitet, Tekniska högskolanLinköping2012force fieldmolecular dynamicslinear absorptionQM/MMabsorption spectrumemission spectrumwater solvationstokes shiftAtom and Molecular Physics and OpticsAtom- och molekylfysik och optikIn this licentiate thesis the luminescence properties of two flexible conjugated dyes have been studied. The first, Pt1, is a platinum(II) acetylide chromophore used in optical power limiting materials. The second is a set of optical probes known as luminescent conjugated oligothiophenes (LCOs), which are used to detect and characterize the protein structures associated with amyloid diseases such as Alzheimer’s disease. MM3 and CHARMM force field parameters have been derived for the Pt1 chromophore and LCOs, respectively, based on potential energy surface references calculated at the density functional theory (DFT)/B3LYP level of theory. The parameters have been used to perform room temperature molecular dynamics simulations of the chromophores in solvent, where tetrahydrofuran was used for Pt1 and water for the LCOs. Conformationally averaged absorption spectra were obtained, based on response theory calculations at the time-dependent DFT(TDDFT)/CAM-B3LYP level of theory for a selection of structures from the simulations. For one of the LCOs, p-HTAA, force field parameters were also created describing the dominant first excited state, based on TDDFT/B3LYP reference potential energy surfaces. These were used for molecular dynamics simulations of the chromophore in the excited state, allowing the creation of an emission spectrum. A theoretically obtained Stokes shift of 112 nm could be computed based on the absorption and emission spectra, which is in good agreement with the experimental value of 124 nm. In addition, a quantum mechanics/molecular mechanics study of the effects of solvation on the absorption properties of the p-HTAA chromophore in water has been conducted, resulting in two models for including these effects in the averaged spectra. The first includes explicit water molecules in the form of point charges and polarizable dipole moments, and results in an absorption wavelength that is blueshifted by 2 nm from a high quality reference calculation. The second model involves the complete removal of the solvent as well as the ionic groups of the chromophore. The resulting absorption wavelength is blueshifted by an additional 4 nm as compared to the first model, but requires only one fifth of the computational resources. Licentiate thesis, comprehensive summaryinfo:eu-repo/semantics/masterThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-75191urn:isbn:978-91-7519-948-1Local LIU-TEK-LIC-2012:7Linköping Studies in Science and Technology. Thesis, 0280-7971 ; 1522application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic force field
molecular dynamics
linear absorption
QM/MM
absorption spectrum
emission spectrum
water solvation
stokes shift
Atom and Molecular Physics and Optics
Atom- och molekylfysik och optik
spellingShingle force field
molecular dynamics
linear absorption
QM/MM
absorption spectrum
emission spectrum
water solvation
stokes shift
Atom and Molecular Physics and Optics
Atom- och molekylfysik och optik
Sjöqvist, Jonas
Luminescence properties of flexible conjugated dyes
description In this licentiate thesis the luminescence properties of two flexible conjugated dyes have been studied. The first, Pt1, is a platinum(II) acetylide chromophore used in optical power limiting materials. The second is a set of optical probes known as luminescent conjugated oligothiophenes (LCOs), which are used to detect and characterize the protein structures associated with amyloid diseases such as Alzheimer’s disease. MM3 and CHARMM force field parameters have been derived for the Pt1 chromophore and LCOs, respectively, based on potential energy surface references calculated at the density functional theory (DFT)/B3LYP level of theory. The parameters have been used to perform room temperature molecular dynamics simulations of the chromophores in solvent, where tetrahydrofuran was used for Pt1 and water for the LCOs. Conformationally averaged absorption spectra were obtained, based on response theory calculations at the time-dependent DFT(TDDFT)/CAM-B3LYP level of theory for a selection of structures from the simulations. For one of the LCOs, p-HTAA, force field parameters were also created describing the dominant first excited state, based on TDDFT/B3LYP reference potential energy surfaces. These were used for molecular dynamics simulations of the chromophore in the excited state, allowing the creation of an emission spectrum. A theoretically obtained Stokes shift of 112 nm could be computed based on the absorption and emission spectra, which is in good agreement with the experimental value of 124 nm. In addition, a quantum mechanics/molecular mechanics study of the effects of solvation on the absorption properties of the p-HTAA chromophore in water has been conducted, resulting in two models for including these effects in the averaged spectra. The first includes explicit water molecules in the form of point charges and polarizable dipole moments, and results in an absorption wavelength that is blueshifted by 2 nm from a high quality reference calculation. The second model involves the complete removal of the solvent as well as the ionic groups of the chromophore. The resulting absorption wavelength is blueshifted by an additional 4 nm as compared to the first model, but requires only one fifth of the computational resources.
author Sjöqvist, Jonas
author_facet Sjöqvist, Jonas
author_sort Sjöqvist, Jonas
title Luminescence properties of flexible conjugated dyes
title_short Luminescence properties of flexible conjugated dyes
title_full Luminescence properties of flexible conjugated dyes
title_fullStr Luminescence properties of flexible conjugated dyes
title_full_unstemmed Luminescence properties of flexible conjugated dyes
title_sort luminescence properties of flexible conjugated dyes
publisher Linköpings universitet, Beräkningsfysik
publishDate 2012
url http://urn.kb.se/resolve?urn=urn:nbn:se:liu:diva-75191
http://nbn-resolving.de/urn:isbn:978-91-7519-948-1
work_keys_str_mv AT sjoqvistjonas luminescencepropertiesofflexibleconjugateddyes
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