<?xml version="1.0"?>
<records>
  <record>
    <language>eng</language>
    <publisher>Ansari Education and Research Society</publisher>
    <journalTitle>Journal of Ultra Chemistry</journalTitle>
    <issn>0973-3450</issn>
    <eissn>2319-8036</eissn>
    <publicationDate>April 2010</publicationDate>
    <volume>6</volume>
    <issue>1</issue>
    <startPage>89</startPage>
    <endPage>96</endPage>
    <doi>juc</doi>
    <publisherRecordId>639</publisherRecordId>
    <documentType>article</documentType>
    <title language="eng">Applications of Polymer- Supported Anion Exchange Resins in Kinetic Study</title>
    <authors>
      <author>
        <name>VILAS Y. SONAWANE (sonawane_vy@rediffmail.com</name>
        <affiliationId>1</affiliationId>
      </author>
      <author>
        <name>NANDINI P. HILAGE</name>
        <affiliationId>2</affiliationId>
      </author>
    </authors>
    <affiliationsList>
      <affiliationName affiliationId="1">Department of Chemistry, Bhausaheb Nene Arts, Science and Comm., College, Pen - Raigad, 402 107, Maharashtra (INDIA)</affiliationName>
      <affiliationName affiliationId="2">Department of Chemistry, Shivaji University, Kolhapur, 416 004, maharastra (India)</affiliationName>
    </affiliationsList>
    <abstract language="eng">&lt;p style="text-align: justify;"&gt;The oxidation of 1- Phenylethanol was investigated to compare the polymer substrate supported reagent with a commercially available cross-linked polymeric reagent. The reagent supported on anion exchange resin was found to be more efficient in the oxidation reaction. The reagent is very easily separated from the reaction mixture and can be manually removed from the reaction mixture, which remains clear during and after the reaction. The kinetics of oxidation of 1-Phenylethanol with chromic acid supported on anion exchange resins like Amberlyst A-26 [Cl&lt;sup&gt;-&lt;/sup&gt;], Duolite A-101 [Cl&lt;sup&gt;-&lt;/sup&gt;] and Ambersep 900 [OH] in 1,4-dioxane has been studied. The reaction is found to be of zero order each in concentration of alcohol and oxidant. The stoichiometry of the reaction has been found to be 2:1. The oxidation products have been isolated and characterized by their derivatives, UV and FT-IR spectral studies. The effect of substituent&amp;#39;s on the rate of oxidation and activation parameters for the overall reactions has been computed from Arrhenius plot.&lt;/p&gt;&#xD;
</abstract>
    <fullTextUrl format="html">https://journalofchemistry.org/paper/639/</fullTextUrl>
    <keywords>
      <keyword language="eng">oxidation</keyword>
    </keywords>
    <keywords>
      <keyword language="eng">activation parameters</keyword>
    </keywords>
  </record>
</records>
