Beta-Diketone and Beta-Ketoenamine Based Molecular Squares

Abstract This dissertation focuses on synthesis of β-diketone and β-ketoenamine ligands for molecular polygons. Previous work with the bis(β-diketone) m-pbaH2 showed that it can be converted to a copper molecular square, Cu4(m-pba)4, but its use in host-guest reactions was limited by its low solubil...

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Main Author: Cherutoi, Jackson Kiplagat
Other Authors: Spivak, David
Format: Others
Language:en
Published: LSU 2012
Subjects:
Online Access:http://etd.lsu.edu/docs/available/etd-07032012-110851/
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spelling ndltd-LSU-oai-etd.lsu.edu-etd-07032012-1108512013-01-07T22:54:06Z Beta-Diketone and Beta-Ketoenamine Based Molecular Squares Cherutoi, Jackson Kiplagat Chemistry Abstract This dissertation focuses on synthesis of β-diketone and β-ketoenamine ligands for molecular polygons. Previous work with the bis(β-diketone) m-pbaH2 showed that it can be converted to a copper molecular square, Cu4(m-pba)4, but its use in host-guest reactions was limited by its low solubility in most organic solvents. Accordingly, in the present work, the m-pbhxH2 ligand, with pentyl chains replacing the methyl groups in the β-diketone moieties of m-pbaH2, was successfully prepared beginning with 6-dodecyne. This ligand reacts with Cu2+ to make the molecular square Cu4(m-pbhx)4, which is soluble in a wider range of solvents. Host-guest reactions of Cu4(m-pbhx)4 with a variety of guest molecules were studied. The structures of the empty square, [Cu4(m-pbhx)4(CH3OH)2], and its adducts with several guest molecules, were determined by single crystal X-ray analysis. In these host-guest adducts, the Cu---Cu distances range from 13.7-15.1 Å. As part of a study of the effects of substituents on the properties of the resulting molecular squares, the 2-MeO-m-pbaH2 ligand had been prepared previously. This dissertation reports an improved synthesis of 2-MeO-m-pbaH2, and its larger homolog 2-MeO-m-pbprH2 was synthesized as well. Treatment of 2-MeO-m-pbprH2 with Cu2+ afforded a molecular square that is soluble in chloroform and dichloromethane. Treatment of the square with guest molecules did not yield adducts, most likely because of steric interference from the internal methoxy groups. The two ligands m-pbaH2 and m-pbprH2 were converted to their ketoenamine analogs m-pbiH2 and m-pbpriH2 through microwave-assisted synthesis. The molecular squares Cu4(m-pbi)4, Cu4(m-pbpri)4, and Ni4(m-pbpri)4 were prepared from these ligands and characterized by single crystal X-ray analysis, UV-Vis spectroscopy, and cyclic voltammetry. Two new bis(β-diketone) ligands based on triphenylamine were prepared for the first time. The new ligands were designed to make Cu(II) molecular squares that are larger (Cu---Cu ca. 21 Å) than Cu4(m-pba)4 and its derivatives. Spivak, David Griffin, Gregory Nesterov, Evgueni Stanley, George Maverick, Andrew LSU 2012-07-09 text application/pdf http://etd.lsu.edu/docs/available/etd-07032012-110851/ http://etd.lsu.edu/docs/available/etd-07032012-110851/ en restricted I hereby certify that, if appropriate, I have obtained and attached herein a written permission statement from the owner(s) of each third party copyrighted matter to be included in my thesis, dissertation, or project report, allowing distribution as specified below. I certify that the version I submitted is the same as that approved by my advisory committee. I hereby grant to LSU or its agents the non-exclusive license to archive and make accessible, under the conditions specified below and in appropriate University policies, my thesis, dissertation, or project report in whole or in part in all forms of media, now or hereafter known. I retain all other ownership rights to the copyright of the thesis, dissertation or project report. I also retain the right to use in future works (such as articles or books) all or part of this thesis, dissertation, or project report.
collection NDLTD
language en
format Others
sources NDLTD
topic Chemistry
spellingShingle Chemistry
Cherutoi, Jackson Kiplagat
Beta-Diketone and Beta-Ketoenamine Based Molecular Squares
description Abstract This dissertation focuses on synthesis of β-diketone and β-ketoenamine ligands for molecular polygons. Previous work with the bis(β-diketone) m-pbaH2 showed that it can be converted to a copper molecular square, Cu4(m-pba)4, but its use in host-guest reactions was limited by its low solubility in most organic solvents. Accordingly, in the present work, the m-pbhxH2 ligand, with pentyl chains replacing the methyl groups in the β-diketone moieties of m-pbaH2, was successfully prepared beginning with 6-dodecyne. This ligand reacts with Cu2+ to make the molecular square Cu4(m-pbhx)4, which is soluble in a wider range of solvents. Host-guest reactions of Cu4(m-pbhx)4 with a variety of guest molecules were studied. The structures of the empty square, [Cu4(m-pbhx)4(CH3OH)2], and its adducts with several guest molecules, were determined by single crystal X-ray analysis. In these host-guest adducts, the Cu---Cu distances range from 13.7-15.1 Å. As part of a study of the effects of substituents on the properties of the resulting molecular squares, the 2-MeO-m-pbaH2 ligand had been prepared previously. This dissertation reports an improved synthesis of 2-MeO-m-pbaH2, and its larger homolog 2-MeO-m-pbprH2 was synthesized as well. Treatment of 2-MeO-m-pbprH2 with Cu2+ afforded a molecular square that is soluble in chloroform and dichloromethane. Treatment of the square with guest molecules did not yield adducts, most likely because of steric interference from the internal methoxy groups. The two ligands m-pbaH2 and m-pbprH2 were converted to their ketoenamine analogs m-pbiH2 and m-pbpriH2 through microwave-assisted synthesis. The molecular squares Cu4(m-pbi)4, Cu4(m-pbpri)4, and Ni4(m-pbpri)4 were prepared from these ligands and characterized by single crystal X-ray analysis, UV-Vis spectroscopy, and cyclic voltammetry. Two new bis(β-diketone) ligands based on triphenylamine were prepared for the first time. The new ligands were designed to make Cu(II) molecular squares that are larger (Cu---Cu ca. 21 Å) than Cu4(m-pba)4 and its derivatives.
author2 Spivak, David
author_facet Spivak, David
Cherutoi, Jackson Kiplagat
author Cherutoi, Jackson Kiplagat
author_sort Cherutoi, Jackson Kiplagat
title Beta-Diketone and Beta-Ketoenamine Based Molecular Squares
title_short Beta-Diketone and Beta-Ketoenamine Based Molecular Squares
title_full Beta-Diketone and Beta-Ketoenamine Based Molecular Squares
title_fullStr Beta-Diketone and Beta-Ketoenamine Based Molecular Squares
title_full_unstemmed Beta-Diketone and Beta-Ketoenamine Based Molecular Squares
title_sort beta-diketone and beta-ketoenamine based molecular squares
publisher LSU
publishDate 2012
url http://etd.lsu.edu/docs/available/etd-07032012-110851/
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