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    <title>Multilayer graphene in the interplay with different photocatalyst architectures for the hydrogen evolution reaction</title>
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    <namePart>Oliveira da Silva, Rafael</namePart>
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    <namePart>Vries, Johannes G. de</namePart>
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  <abstract type="Summary">The use of graphene as co-component for nanostructured materials has led to the claim of improving efficiencies of solar cells, fuel cells and particular in photocatalytic systems for solar water splitting. As a result of exceptional conductivity properties it is believed that graphene might always enhance the separation of charge carriers, consequently increasing photocatalytic performances. However, herein is demonstrated that employing graphene in different configurations, i.e. powder suspension, multicomponent aerogel and electrode, the photocatalytic enhancement is rather case sensitive.&lt;eng&gt;</abstract>
  <abstract type="Summary">Die Verwendung von Graphen als Co-Komponente in Solarzellen, Brennstoffzellen oder in photokatalytischen Systemen zur Wasserspaltung führte zu der allgemeinen Annahme, dass mittels dieser Materialien ein effizienterer Betrieb möglich ist. Als Folge seiner außergewöhnlichen Leitfähigkeit wird angenommen, dass Graphen immer durch Ladungsträgertrennung konsequenterweise die photokatalytische Leistungsfähigkeit erhöht. Die verschiedenen Studien dieser Arbeit zeigten jedoch, dass der Einfluss vielmehr fallsensitiv, wie beim Einsatz in multikomponenten Suspensionen, Aerogelen oder Elektroden, ist.&lt;ger&gt;</abstract>
  <note type="statement of responsibility">vorgelegt von Rafael Oliveira da Silva aus Rostock</note>
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      <title>Multilayer graphene in the interplay with different photocatalyst architectures for the hydrogen evolution reaction</title>
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      <publisher>Rostock : Universität, 2016</publisher>
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    <identifier type="local">(DE-627)863201156</identifier>
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      <namePart>Oliveira da Silva, Rafael, 1982 - </namePart>
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  <identifier type="urn">urn:nbn:de:gbv:28-diss2016-0098-7</identifier>
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