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  <titleInfo>
    <title>Electrochemistry of dihydroxybenzene compounds : carbon based electrodes and their uses in synthesis and sensors</title>
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    <namePart>Ghadimi, Hanieh</namePart>
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  <name type="personal">
    <namePart>Ghani, Sulaiman Ab</namePart>
    <role>
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    </role>
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  <name type="personal">
    <namePart>Amiri, IS</namePart>
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  <genre authority="">Electronic books.</genre>
  <genre authority="">Electronic book.</genre>
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    <dateIssued encoding="marc">2017</dateIssued>
    <copyrightDate encoding="marc">2017</copyrightDate>
    <issuance>monographic</issuance>
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  <language>
    <languageTerm authority="iso639-2b" type="code">eng</languageTerm>
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    <extent>1 online resource : illustrations</extent>
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  <tableOfContents>Front Cover; Electrochemistry of Dihydroxybenzene Compounds; Copyright Page; Contents; List of Figures; List of Tables; List of Schemes; Acknowledgments; List of Abbreviations and Symbols; 1 Introduction; 1.1 Nanotechnology and Nanoscience; 1.1.1 Type and Properties of Nanostructures; 1.1.2 Applications of Nanomaterials; 1.2 Carbon-Based Materials; 1.2.1 Carbon-Based Materials in Electrochemistry; 1.3 The Importance of Electrode Surface in Electrochemistry; 1.3.1 Multiwalled Carbon Nanotube; 1.3.2 Graphene.</tableOfContents>
  <tableOfContents>1.3.3 Benefits of Applying Carbon Nanotubes (CNTs) and Graphene in Electrochemical Analysis1.4 Polymer Nanocomposite (PNC) Based on Carbon Nanomaterial Electrode; 1.4.1 PNC Based on Multiwalled Carbon Nanotube (MWCNT); 1.4.2 PNC Based on Graphene; 1.5 Conductive Polymer; 1.5.1 Types of Conducting Polymers; 1.5.2 Poly(4-vinylpyridine) (P4VP) as a Conducting Polymer; 1.6 Electroorganic Synthesis; 1.7 Dihydroxybenzenes and Its Derivatives; 1.7.1 Catechol; 1.7.2 Hydroquinone; 1.8 Electrochemical Synthesis of CT in the Presence of Nucleophile; 1.8.1 Thiosemicarbazide.</tableOfContents>
  <tableOfContents>1.9 Methods Used for Determination of Dihydroxybenzene (DHB)1.9.1 Electrochemical Method; 1.10 Electrochemical Sensors for Analysis; 1.10.1 CT as a Sensor for Electrochemical Determination; 1.10.2 Electrochemical Sensor for Detection of CT and HQ; 1.10.2.1 Determination of Catechol; 1.10.2.2 Determination of Hydroquinone; 1.10.2.3 Simultaneous Determination of CT and HQ on Modified Electrodes; 1.11 Application of the Nanocomposite-Modified Electrodes for Pharmaceutical Analysis; 1.11.1 Determination of Paracetamol (PCT); 1.11.2 Determination of Acetylsalicylic Acid (ASA).</tableOfContents>
  <tableOfContents>1.11.3 Determination of Caffeine1.12 Problem Statement; 1.13 Objectives; 2 Experimental; 2.1 Materials; 2.2 Instruments; 2.3 Electrochemical Method for Synthesis of Dihydroxybenzenes Derivatives; 2.3.1 Preparation of Working Electrode; 2.3.2 Electrochemical Study of CT in the Presence of TSC; 2.3.3 Electroorganic Synthesis; 2.4 Electrochemical Study of Modified Electrodes; 2.4.1 Purification and Acetic Functionalization of MWCNTs; 2.4.2 Preparation of P4VP/MWCNT-Modified GCE; 2.4.3 Graphene Sheets Functionalization; 2.4.4 Preparation of P4VP/GR-Modified GCE.</tableOfContents>
  <tableOfContents>2.5 Determination of TSC in Real Samples2.5.1 Determination of TSC in Water Samples; 2.5.2 Determination of TSC in Propranolol Tablets; 2.6 Electrochemical Sensor Studies; 2.6.1 Electrochemistry Determination of Diphenols; 2.6.2 Electrochemistry of PCT; 2.6.3 Electrochemistry of Aspirin and Caffeine; 2.7 Real Sample Analysis; 2.7.1 Determination of Diphenols in Water Samples; 2.7.2 Determination of PCT in Formulation Tablets; 2.7.3 Determination of PCT in Urine Mid-Samples; 2.7.4 Determination of ASA in Formulation Tablets; 2.8 Characterization of the Modified Electrodes.</tableOfContents>
  <note type="statement of responsibility">Hanieh Ghadimi, Sulaiman Ab Ghani, IS Amiri.</note>
  <note>Includes bibliographical references.</note>
  <subject authority="lcsh">
    <topic>Electrodes, Carbon</topic>
  </subject>
  <subject authority="lcsh">
    <topic>Electrochemical analysis</topic>
  </subject>
  <subject authority="lcsh">
    <topic>Nanostructured materials</topic>
  </subject>
  <subject authority="bisacsh">
    <topic>SCIENCE</topic>
    <topic>Chemistry</topic>
    <topic>Analytic</topic>
  </subject>
  <subject authority="fast">
    <topic>Electrochemical analysis</topic>
  </subject>
  <subject authority="fast">
    <topic>Electrodes, Carbon</topic>
  </subject>
  <subject authority="fast">
    <topic>Nanostructured materials</topic>
  </subject>
  <classification authority="lcc">QD572.C37</classification>
  <classification authority="lcc">TK7725</classification>
  <classification authority="ddc" edition="23">543/.4</classification>
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      <title>Electrochemistry of dihydroxybenzene compounds</title>
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    <name>
      <namePart>Ghadimi, Hanieh.</namePart>
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    <originInfo>
      <publisher>Amsterdam, Netherlands : Elsevier, [2017]</publisher>
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    <identifier type="local">(OCoLC)966568792</identifier>
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  <identifier type="isbn">9780128134085</identifier>
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