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        <identifier>oai:www.ideals.illinois.edu:2142/70405</identifier>
        <datestamp>2023-07-11</datestamp>
        <setSpec>col_2142_5131</setSpec>
        <setSpec>col_2142_14789</setSpec>
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        <thesis xmlns="http://www.ndltd.org/standards/metadata/etdms/1.1/" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns:dc="http://purl.org/dc/elements/1.1/" xsi:schemaLocation="http://www.ndltd.org/standards/metadata/etdms/1.1/ http://www.ndltd.org/standards/metadata/etdms/1.1/etdms11.xsd http://purl.org/dc/elements/1.1/ http://www.ndltd.org/standards/metadata/etdms/1.1/etdmsdc.xsd">
          <dc:contributor>Klemperer, Walter G.</dc:contributor>
          <dc:creator>Wang, Ren-Chain</dc:creator>
          <dc:date>2014-12-15T23:19:13Z</dc:date>
          <dc:date>2014-12-15T23:19:13Z</dc:date>
          <dc:date>10000-01-01</dc:date>
          <dc:date>1988</dc:date>
          <dc:date>1988</dc:date>
          <dc:description>The alkyl and silyl phosphomolybdates (P$\sb3$O$\sb9$)MoO$\sb2$OR((n-C$\sb4$H$\sb9)\sb4$N) $\sb2$ $\{$R = CH$\sb3$, CH$\sb2$CH$\sb3$, 1, CH(CH$\sb3)\sb2$, CH$\sb2$CH=CH$\sb2$, CH$\sb2$CH$\sb2$C$\sb6$H$\sb5$, and Si(CH$\sb3)\sb3\}$ have been prepared and characterized. A single crystal X-ray diffraction study reveals that in 1, the P$\sb3$O$\sb9\sp{3-}$ ligand acts as a tridentate ligand coordinated to MoO$\sb2$OCH$\sb2$CH$\sb3\sp+$ unit. Two short intramolecular CH$\cdots$OMo contacts between the methylene hydrogens and the oxygens of P-O and Mo=O are found in anion 1. Based on $\sp{31}$P, $\sp $O, and $\sp1$H NMR studies, hydrolysis of (P$\sb3$O$\sb9$)MoO$\sb2$OCH$\sb3\sp{2-}$ produces the anhydride ((P$\sb3$O$\sb9$)MoO$\sb2$) $\sb2$O$\sp{4-}$ and the acid (P$\sb3$O$\sb9$)MoO$\sb3$H$\sp{2-}$. In the presence of excess methanol, the methyl ester (P$\sb3$O$\sb9$)MoO$\sb2$OCH$\sb3\sp{2-}$ can be regenerated from the anhydride and the acid. The acid slowly dimerizes to form the dimer, (P$\sb3$O$\sb $HMoO$\sb2)\sb2\sp{4-}$, which has been isolated in crystalline form. An X-ray crystal structural analysis of this dimer reveals the presence of a tetradentate linear triphosphate ligand. The hydrogens in this anion were located by $\sp{31}$P NMR study.</dc:description>
          <dc:description>Thermolysis of (P$\sb3$O$\sb9$)MoO$\sb2$OCH$\sb2$CH$\sb3$((n-C$\sb4$H$\sb9)\sb4$N) $\sb2$, 1, in CH$\sb3$CN produces acetaldehyde, ethanol, and unidentified soluble inorganic products. According to deuterium labeling experiments, the rate-determining step of the reaction is the methylene C-H cleavage. An intramolecular mechanism is proposed based on these kinetic data and the short CH$\cdots$OMo contact found in the structure. Photolysis of 1 gives ethylene, acetaldehyde, ethanol, and unidentified soluble inorganic products. A deuterium labeling experiment revealed that the cleavage of methylene C-H bond and methyl C-H bond are the rate-determining steps for acetaldehyde and ethylene formation, respectively. Intramolecular mechanisms which are analogous to the well-known organic Norrish Type II reaction have been proposed for these photoreactions.</dc:description>
          <dc:description>The allyl ester (P$\sb3$O$\sb9)$MoO$\sb2$OCH$\sb2$CH=CH$\sb2$((n-C$\sb4$H$\sb9)\sb4$N) $\sb2$ isomerizes in CH$\sb3$CN at 80$\sp\circ$C to form the enol ester cis-(P$\sb3$O$\sb9$)MoO$\sb2$OCH=CHCH$\sb3$((n-C$\sb4$H$\sb9)\sb4$N) $\sb2$. Under the same reaction conditions, allyl-1,1-d$\sb2$ ester (P$\sb3$O$\sb9$)MoO$\sb2$OCD$\sb2$CH=CH$\sb2$((n- C$\sb4$H$\sb9)\sb4$N) $\sb2$ isomerizes to yield enol-1,3-d$\sb2$ ester cis-(P$\sb3$O$\sb9$)MoO$\sb2$OCD=CHCH$\sb2$D((n-C$\sb4$H$\sb9)\sb4$N) $\sb2$. The isomerization kinetics for both allyl esters are first order. The rate-determining step in the isomerization is cleavage of the methylene C-H bond according to the deuterium labeling experiments. Deuterium labeling crossover experiments indicate the isomerization is intramolecular. A mechanism is proposed for this isomerization that involves a 1,3 proton shift via an intermediate in which the proton is bonded to a molybdenyl (Mo=O) oxygen.</dc:description>
          <dc:description>Made available in DSpace on 2014-12-15T23:19:13Z (GMT). No. of bitstreams: 1
8815439.pdf: 3313896 bytes, checksum: 62e205ec570a67c3385228c75dfb1439 (MD5)
  Previous issue date: 1988</dc:description>
          <dc:description>Embargo set by: Seth Robbins for item 70571
Lift date: Forever
Reason: Restricted to the U of I community idenfinitely during batch ingest of legacy ETDs</dc:description>
          <dc:description>Restricted to the U of I community idenfinitely during batch ingest of legacy ETDs</dc:description>
          <dc:description>U of I Only</dc:description>
          <dc:description>133 p.</dc:description>
          <dc:description>Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1988.</dc:description>
          <dc:identifier>http://hdl.handle.net/2142/70405</dc:identifier>
          <dc:identifier>(UMI)AAI8815439</dc:identifier>
          <dc:subject>Chemistry, Inorganic</dc:subject>
          <dc:title>Synthesis, Characterization, and Reactivity of Alkylphosphomolybdates: Oxidation, Dehydration, and Isomerization</dc:title>
          <dc:type>text</dc:type>
          <degree>
            <department>Chemistry</department>
            <discipline>Chemistry</discipline>
            <grantor>University of Illinois at Urbana-Champaign</grantor>
            <level>Dissertation</level>
            <name>Ph.D.</name>
          </degree>
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