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      <header>
        <identifier>oai:www.ideals.illinois.edu:2142/21150</identifier>
        <datestamp>2023-07-10</datestamp>
        <setSpec>col_2142_5131</setSpec>
        <setSpec>col_2142_14789</setSpec>
        <setSpec>com_2142_5130</setSpec>
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        <setSpec>com_2142_8903</setSpec>
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      <metadata>
        <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>Shapley, John R.</dc:contributor>
          <dc:creator>Lane, Philip Douglas</dc:creator>
          <dc:date>2011-05-07T12:59:50Z</dc:date>
          <dc:date>2011-05-07T12:59:50Z</dc:date>
          <dc:date>10000-01-01</dc:date>
          <dc:date>1995</dc:date>
          <dc:description>When (Re(CO)$\sb3$OH) $\sb4$ was supported on Al$\sb2$O$\sb3$ followed by heating in H$\sb2$ no decomposition gas products, CO and CH$\sb4$, were observed below 650 K. Following the activation by infrared spectroscopy showed the formation of Re(CO)$\rm\sb3\{O$-$\rm Al\}\{HO$-Al$\}\sb2$ at 480 K. The activated sample, (Re$\sb4$) /Al$\sb2$O$\sb3$, when exposed to CO/H$\sb2$ at 298 K, produced CH$\sb4$ near 500 K with a shoulder near 600 K in the temperature programmed reaction (TPR) profile. Elevating the CO/H$\sb2$ treatment temperature to 500 K resulted in the formation of CH$\sb4$ at 560 K. The adsorption of CH$\sb3$OH or CH$\sb3$I to the sample produced CH$\sb4$ at 580 K. When (Re(CO)$\sb3$OH) $\sb4$ activated on SiO$\sb2$, only one CH$\sb4$ peak at 490 K was observed for CO/H$\sb2$ adsorption. When TiO$\sb2$ was used as a support, a spillover species was also observed from CO and H$\sb2$ exposure at 500 K. The spillover rate appeared to be slower on TiO$\sb2$ than was observed on Al$\sb2$O$\sb3$.</dc:description>
          <dc:description>When both the PPN$\sp+$ and Et$\sb4$N$\sp+$ forms of (Re$\sb7$IrC(CO)$\sb{23}\rbrack\sp{2-}$ and (Re$\sb5$IrC(CO)$\sb{17}\{$Re(CO)$\sb3\}\sb2\rbrack\sp{2-}$ were supported on Al$\sb2$O$\sb3$, their decompositions were followed by TPDE and infrared spectroscopy. For the hydrogenolysis of ethane, the most and least active catalyst samples were (Re$\sb7$Ir(Et$\sb4$N)) /Al$\sb2$O$\sb3$, and (ReIr$\sb7$(PPN)) /Al$\sb2$O$\sb3$, respectively. The other two samples, (Re$\sb5$IrRe$\sb2$(Et$\sb4$N)) /Al$\sb2$O$\sb3$ and (Re$\sb5$IrRe$\sb2$(PPN)) /Al$\sb2$O$\sb3$, showed comparable activity. All samples appeared, by infrared spectroscopy, to form Re(CO)$\sb3\{$O-Al$\}\{$HO-Al$\}\sb2$ and smaller nuclearity clusters on the surface during decomposition. The amount of Re(CO)$\sb3\{$O-Al$\}\{$HO-Al$\}\sb2$ formed at 573 K correlated with the ethane hydrogenolysis activity of the resulting catalyst. The sample most active for ethane hydrogenolysis, (Re$\sb7$Ir(Et$\sb4$N)) /Al$\sb2$O$\sb3$, produced the largest amount of Re(CO)$\sb3\{$O-Al$\}\{$HO-Al$\}\sb2$during activation by 573 K, 60% of the available rhenium, and the sample least active, (Re$\sb7$IrC(CO)$\sb{23}$(PPN)) /Al$\sb2$O$\sb3$, resulted in the smallest amount, 40%. All samples produced CH$\sb4$ in the TPR profiles from the adsorption of CO in H$\sb2$.</dc:description>
          <dc:description>Made available in DSpace on 2011-05-07T12:59:50Z (GMT). No. of bitstreams: 2
license.txt: 4922 bytes, checksum: 910b249b4beec47e7ab768910c8f966f (MD5)
9624405.pdf: 4189772 bytes, checksum: b23ed82e02e9138ac208bc85631e8c31 (MD5)
  Previous issue date: 1995</dc:description>
          <dc:description>Item marked as restricted to the 'UIUC Users [automated]' Group (id=2) by Howard Ding (hding2@illinois.edu) on 2011-05-07T14:48:49Z
Item is restricted indefinitely.</dc:description>
          <dc:description>Restriction data tranferred 2014-07-01T11:22:09-05:00
Original Data
Group with Access UIUC Users [automated]
Release Date: none
Reason: ETDs are only available to UIUC Users without author permission</dc:description>
          <dc:description>ETDs are only available to UIUC Users without author permission</dc:description>
          <dc:description>U of I Only</dc:description>
          <dc:identifier>AAI9624405</dc:identifier>
          <dc:identifier>(UMI)AAI9624405</dc:identifier>
          <dc:identifier>http://hdl.handle.net/2142/21150</dc:identifier>
          <dc:language>eng</dc:language>
          <dc:rights>Copyright 1995 Lane, Philip Douglas</dc:rights>
          <dc:subject>Chemistry, Inorganic</dc:subject>
          <dc:title>Heterogeneous catalytic studies with rhenium cluster-based precursors</dc:title>
          <dc:type>text</dc:type>
          <degree>
            <grantor>University of Illinois at Urbana-Champaign</grantor>
            <level>Dissertation</level>
            <name>Ph.D.</name>
            <department>Chemistry</department>
            <discipline>Chemistry</discipline>
          </degree>
        </thesis>
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