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    <name>PhD</name>
    <description>PhD Thesis</description>
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              <text>61000417</text>
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          <name>Title</name>
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              <text>Energy and Environmental Applications of Polymer Based Mixed Metal Oxide Nanocomposites  </text>
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              <text>Chemistry</text>
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              <text>The dependence of human lives on fossil fuels is very inevitably high for the development of society. This leads to the exploitation of these non-renewable sources, which brings forth society, which is another major issue that has to be tackled. In this study, we have focused on addressing the energy and environmental needs of society using different catalysts. The polymer based mixed metal oxide catalysts are used for the utility towards multiple applications. The energy issues can be mitigated through newlinesupercapacitance studies and water splitting studies. The water splitting studies can newlineproduce hydrogen, an efficient and eco-friendly fuel, and supercapacitors can store newlineenergy effectively. Water pollution is another problem faced by our society, which newlinereduces the availability of freshwater sources. This can be overcome by following newlineeffective and cost-efficient adsorption techniques. Another major threat that prevails in our society is corrosion. Corrosion inhibition studies are followed to tackle this issue and provide a corrosion-free environment. The various polymers used in this study are polyaniline, polypyrrole, poly (3,4-ethylenedioxythiophene), and chitosan. These polymers are mixed with different metal oxides, and the synergy between the polymers and metal oxides provides efficiency towards the mentioned applications. The successful formation of composites is confirmed using various characterization techniques. Several electrochemical studies like cyclic voltammetry, galvanostatic charge-discharge studies, electrochemical impedance spectroscopy, linear sweep voltammetry, and potentiodynamic techniques are employed to analyze the efficacy of the composites towards supercapacitance, water splitting, and corrosion inhibition studies. The batch adsorption studies are executed for water purification studies. The synthesized multifunctional composites can be used as potential candidates for addressing the energy and environmental needs of our society in a sustainable manner.</text>
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          <name>Creator</name>
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              <text>Arun, Varghese</text>
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              <text>Author's Submission</text>
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              <text>Christ(Deemed to be University)</text>
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              <text>2024-01-01</text>
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              <text>K R, Sunaja Devi.</text>
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              <text>Open Access</text>
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          <name>Format</name>
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              <text>PDF</text>
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              <text>English</text>
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              <text>PhD</text>
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              <text>&lt;a href="http://hdl.handle.net/10603/618219" target="_blank" rel="noreferrer noopener"&gt;http://hdl.handle.net/10603/618219&lt;/a&gt;</text>
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