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    <title>UTas ePrints - Macroporous monolith supports for continuous flow capillary microreactors</title>
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    <meta content="Bolton, K.F." name="eprints.creators_name" />
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methacrylate-co-ethylene dimethacrylate)] in fused silica capillaries (250 micrometre internal diameter).   Immobilisation of ligand was achieved by passing a solution of 5-hydroxy-1,10-phenanthroline, and palladium(II) was added.  Suzuki-Miyaura catalysis was studied.  The excellent flow-through properties, firm attachment
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methacrylate-co-ethylene dimethacrylate)] in fused silica capillaries (250 micrometre internal diameter).   Immobilisation of ligand was achieved by passing a solution of 5-hydroxy-1,10-phenanthroline, and palladium(II) was added.  Suzuki-Miyaura catalysis was studied.  The excellent flow-through properties, firm attachment
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    <h1 class="ep_tm_pagetitle">Macroporous monolith supports for continuous flow capillary microreactors</h1>
    <p style="margin-bottom: 1em" class="not_ep_block"><span class="person_name">Bolton, K.F.</span> and <span class="person_name">Canty, A.J.</span> and <span class="person_name">Deverell, J.A.</span> and <span class="person_name">Guijt, R.M.</span> and <span class="person_name">Hilder, E.F.</span> and <span class="person_name">Rodemann, T.</span> and <span class="person_name">Smith, J.A.</span> (2006) <xhtml:em>Macroporous monolith supports for continuous flow capillary microreactors.</xhtml:em> Tetrahedron Letters, 47 (52). pp. 9321-9324. ISSN 0040-4039</p><p style="margin-bottom: 1em" class="not_ep_block"></p><table style="margin-bottom: 1em" class="not_ep_block"><tr><td valign="top" style="text-align:center"><a href="http://eprints.utas.edu.au/3082/1/TetLett2006%2C_9321.pdf"><img alt="[img]" src="http://eprints.utas.edu.au/style/images/fileicons/application_pdf.png" class="ep_doc_icon" border="0" /></a></td><td valign="top"><a href="http://eprints.utas.edu.au/3082/1/TetLett2006%2C_9321.pdf"><span class="ep_document_citation">PDF</span></a> - Full text restricted - Requires a PDF viewer<br />220Kb</td><td><form method="get" accept-charset="utf-8" action="http://eprints.utas.edu.au/cgi/request_doc"><input accept-charset="utf-8" value="4229" name="docid" type="hidden" /><div class=""><input value="Request a copy" name="_action_null" class="ep_form_action_button" onclick="return EPJS_button_pushed( '_action_null' )" type="submit" /> </div></form></td></tr></table><p style="margin-bottom: 1em" class="not_ep_block">Official URL: <a href="http://dx.doi.org/10.1016/j.tetlet.2006.10.113">http://dx.doi.org/10.1016/j.tetlet.2006.10.113</a></p><div class="not_ep_block"><h2>Abstract</h2><p style="padding-bottom: 16px; text-align: left; margin: 1em auto 0em auto">A solid macroporous monolith is shown to be a suitable substrate for anchoring a palladium complex to obtain a continuous porous material suitable for conducting flow-through catalysis in capillary microreactors.  The monolith for this study was GMA-co-EDMA [poly(glycidyl&#13;
methacrylate-co-ethylene dimethacrylate)] in fused silica capillaries (250 micrometre internal diameter).   Immobilisation of ligand was achieved by passing a solution of 5-hydroxy-1,10-phenanthroline, and palladium(II) was added.  Suzuki-Miyaura catalysis was studied.  The excellent flow-through properties, firm attachment&#13;
to capillary walls, and robustness of the capillary systems&#13;
for catalysis demonstrated after continuous reaction for four days indicate that this approach is suitable for further development of capillary-based microreactors that are suitable for continuous flow processes and parallel synthesis.</p></div><table style="margin-bottom: 1em" cellpadding="3" class="not_ep_block" border="0"><tr><th valign="top" class="ep_row">Item Type:</th><td valign="top" class="ep_row">Article</td></tr><tr><th valign="top" class="ep_row">Additional Information:</th><td valign="top" class="ep_row">The definitive version is available at http://www.sciencedirect.com&#13;
</td></tr><tr><th valign="top" class="ep_row">Subjects:</th><td valign="top" class="ep_row"><a href="http://eprints.utas.edu.au/view/subjects/250102.html">250000 Chemical Sciences &gt; 250100 Physical Chemistry (incl. Structural) &gt; 250102 Chemistry of Catalysis</a></td></tr><tr><th valign="top" class="ep_row">Collections:</th><td valign="top" class="ep_row">UNSPECIFIED</td></tr><tr><th valign="top" class="ep_row">ID Code:</th><td valign="top" class="ep_row">3082</td></tr><tr><th valign="top" class="ep_row">Deposited By:</th><td valign="top" class="ep_row"><span class="ep_name_citation"><span class="person_name">Prof Allan J Canty</span></span></td></tr><tr><th valign="top" class="ep_row">Deposited On:</th><td valign="top" class="ep_row">23 Jan 2008 10:00</td></tr><tr><th valign="top" class="ep_row">Last Modified:</th><td valign="top" class="ep_row">23 Jan 2008 10:00</td></tr><tr><th valign="top" class="ep_row">ePrint Statistics:</th><td valign="top" class="ep_row"><a target="ePrintStats" href="/es/index.php?action=show_detail_eprint;id=3082;">View statistics for this ePrint</a></td></tr></table><p align="right">Repository Staff Only: <a href="http://eprints.utas.edu.au/cgi/users/home?screen=EPrint::View&amp;eprintid=3082">item control page</a></p>
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