Photophysical studies of silver(I), platinum(II), palladium(II), and nickel(II) complexes and their use in electronic devices.

This dissertation deals with two major topics that involve spectroscopic studies of (a) divalent group 10 metals and (b) silver(I)-phosphine complexes. The scope of the work involved the delineation of the electronic structure of these complexes in different environments and their use in electronic...

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Bibliographic Details
Main Author: Hudson, Joshua M.
Other Authors: Omary, Mohammad
Format: Others
Language:English
Published: University of North Texas 2007
Subjects:
TPA
Online Access:https://digital.library.unt.edu/ark:/67531/metadc5165/
id ndltd-unt.edu-info-ark-67531-metadc5165
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spelling ndltd-unt.edu-info-ark-67531-metadc51652017-03-17T08:36:00Z Photophysical studies of silver(I), platinum(II), palladium(II), and nickel(II) complexes and their use in electronic devices. Hudson, Joshua M. Solar cell dyes John-Teller OLED donor acceptor nitrofluorenones 4-coordinate TPA self association nickel silver palladium platinum Metal complexes. Silver. Platinum. Palladium. Nickel. Electronic apparatus and appliances -- Design and construction. Phosphine. This dissertation deals with two major topics that involve spectroscopic studies of (a) divalent group 10 metals and (b) silver(I)-phosphine complexes. The scope of the work involved the delineation of the electronic structure of these complexes in different environments and their use in electronic devices. The first topic is a look at the luminescence of tetrahedral silver(I)-phosphine complexes. Broad unstructured emissions with large Stokes shifts were found for these complexes. Computational analysis of the singlet and triplet state geometries suggests that this emission is due to a Jahn-Teller type distortion. The second topic represents the major thrust of this research, which is an investigation into the electronic structure of M(diimine)X2 (M= Pt(II), Pd(II), or Ni(II); X = dichloro, or dithiolate ligands) complexes and their interactions with an electron acceptor or Lewis acid. Chapter 3 assesses the use of some of these complexes in dye sensitized solar cells (DSSCs); it is shown that these complexes may lead to a viable alternative to the more expensive ruthenium-based dyes that are being implemented now. Chapter 4 is an investigation into donor/acceptor pairs involving this class of complexes, which serves as a feasibility test for the use of these complexes in organic photo-voltaics (OPVs) and thin-film field-effect transistors (OTFTs). The mixing of a donor Pt molecule with an electron deficient nitrofluorenone gives rise to new absorption bands in the NIR region. Computational studies of one of the solids suggest that these complexes may have metallic behavior. Chapter 5 demonstrates association in solution, previously unobserved, for Pt(diimine)Cl2 complexes. This chapter is an investigation into the effects of the association mode for this class of complexes on the absorption and emission properties. One of the complexes was used as the emitter in organic light emitting diodes (OLEDs). The results of this study show that these complexes have tunable absorption and emission energies that are concentration dependant. The concentration dependence of the absorption and emission energies is utilized in the OLED device where association enhances the performance. University of North Texas Omary, Mohammad Schwartz, Martin Cundari, Thomas R. Selby, Trent D. 2007-12 Thesis or Dissertation Text oclc: 228639601 https://digital.library.unt.edu/ark:/67531/metadc5165/ ark: ark:/67531/metadc5165 English Public Copyright Hudson, Joshua M. Copyright is held by the author, unless otherwise noted. All rights reserved.
collection NDLTD
language English
format Others
sources NDLTD
topic Solar cell dyes
John-Teller
OLED
donor
acceptor
nitrofluorenones
4-coordinate
TPA
self association
nickel
silver
palladium
platinum
Metal complexes.
Silver.
Platinum.
Palladium.
Nickel.
Electronic apparatus and appliances -- Design and construction.
Phosphine.
spellingShingle Solar cell dyes
John-Teller
OLED
donor
acceptor
nitrofluorenones
4-coordinate
TPA
self association
nickel
silver
palladium
platinum
Metal complexes.
Silver.
Platinum.
Palladium.
Nickel.
Electronic apparatus and appliances -- Design and construction.
Phosphine.
Hudson, Joshua M.
Photophysical studies of silver(I), platinum(II), palladium(II), and nickel(II) complexes and their use in electronic devices.
description This dissertation deals with two major topics that involve spectroscopic studies of (a) divalent group 10 metals and (b) silver(I)-phosphine complexes. The scope of the work involved the delineation of the electronic structure of these complexes in different environments and their use in electronic devices. The first topic is a look at the luminescence of tetrahedral silver(I)-phosphine complexes. Broad unstructured emissions with large Stokes shifts were found for these complexes. Computational analysis of the singlet and triplet state geometries suggests that this emission is due to a Jahn-Teller type distortion. The second topic represents the major thrust of this research, which is an investigation into the electronic structure of M(diimine)X2 (M= Pt(II), Pd(II), or Ni(II); X = dichloro, or dithiolate ligands) complexes and their interactions with an electron acceptor or Lewis acid. Chapter 3 assesses the use of some of these complexes in dye sensitized solar cells (DSSCs); it is shown that these complexes may lead to a viable alternative to the more expensive ruthenium-based dyes that are being implemented now. Chapter 4 is an investigation into donor/acceptor pairs involving this class of complexes, which serves as a feasibility test for the use of these complexes in organic photo-voltaics (OPVs) and thin-film field-effect transistors (OTFTs). The mixing of a donor Pt molecule with an electron deficient nitrofluorenone gives rise to new absorption bands in the NIR region. Computational studies of one of the solids suggest that these complexes may have metallic behavior. Chapter 5 demonstrates association in solution, previously unobserved, for Pt(diimine)Cl2 complexes. This chapter is an investigation into the effects of the association mode for this class of complexes on the absorption and emission properties. One of the complexes was used as the emitter in organic light emitting diodes (OLEDs). The results of this study show that these complexes have tunable absorption and emission energies that are concentration dependant. The concentration dependence of the absorption and emission energies is utilized in the OLED device where association enhances the performance.
author2 Omary, Mohammad
author_facet Omary, Mohammad
Hudson, Joshua M.
author Hudson, Joshua M.
author_sort Hudson, Joshua M.
title Photophysical studies of silver(I), platinum(II), palladium(II), and nickel(II) complexes and their use in electronic devices.
title_short Photophysical studies of silver(I), platinum(II), palladium(II), and nickel(II) complexes and their use in electronic devices.
title_full Photophysical studies of silver(I), platinum(II), palladium(II), and nickel(II) complexes and their use in electronic devices.
title_fullStr Photophysical studies of silver(I), platinum(II), palladium(II), and nickel(II) complexes and their use in electronic devices.
title_full_unstemmed Photophysical studies of silver(I), platinum(II), palladium(II), and nickel(II) complexes and their use in electronic devices.
title_sort photophysical studies of silver(i), platinum(ii), palladium(ii), and nickel(ii) complexes and their use in electronic devices.
publisher University of North Texas
publishDate 2007
url https://digital.library.unt.edu/ark:/67531/metadc5165/
work_keys_str_mv AT hudsonjoshuam photophysicalstudiesofsilveriplatinumiipalladiumiiandnickeliicomplexesandtheiruseinelectronicdevices
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