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name="category">licenseinfo:work.rightsreserved</field><field name="category.top">licenseinfo:work.rightsreserved</field><field name="allMeta">alle Rechte vorbehalten</field><field name="allMeta">all rights reserved</field><field name="allMeta">/creativecommons/r/reserved/0.9/88x31.png</field><field name="allMeta">[DE-28]Urheberrechtsschutz 1.0$gRights Statements$uhttp://rightsstatements.org/vocab/InC/1.0/</field><field name="allMeta">http://rightsstatements.org/vocab/InC/1.0/</field><field name="allMeta">http://rightsstatements.org/vocab/InC/1.0/</field><field name="mods.title">Multilayer graphene in the interplay with different photocatalyst architectures for the hydrogen evolution reaction</field><field name="mods.title.main">Multilayer graphene in the interplay with different photocatalyst architectures for the hydrogen evolution reaction</field><field name="mods.title.subtitle"></field><field name="mods.nameIdentifier">gnd:1111522081</field><field name="mods.nameIdentifier">gnd:132252880</field><field name="mods.nameIdentifier">gnd:1016017537</field><field name="mods.nameIdentifier">gnd:2147083-2</field><field name="mods.nameIdentifier.top">gnd:1111522081</field><field name="mods.nameIdentifier.top">gnd:132252880</field><field name="mods.nameIdentifier.top">gnd:1016017537</field><field name="mods.nameIdentifier.top">gnd:2147083-2</field><doc><field name="id">rosdok_disshab_0000001606-d3564930e39</field><field name="mods.nameIdentifier">gnd:1111522081</field><field name="mods.name">Rafael Oliveira da Silva</field><field name="mods.name.top">Rafael Oliveira da Silva</field></doc><doc><field name="id">rosdok_disshab_0000001606-d3564930e60</field><field name="mods.nameIdentifier">gnd:132252880</field><field name="mods.name">Prof. Dr. Johannes Gerardus de Vries</field><field name="mods.name.top">Prof. Dr. Johannes Gerardus de Vries</field></doc><doc><field name="id">rosdok_disshab_0000001606-d3564930e75</field><field name="mods.nameIdentifier">gnd:1016017537</field><field name="mods.name">Prof. Dr. Joachim Wagner</field><field name="mods.name.top">Prof. Dr. Joachim Wagner</field></doc><doc><field name="id">rosdok_disshab_0000001606-d3564930e90</field><field name="mods.nameIdentifier">gnd:2147083-2</field><field name="mods.name">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.name.top">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field></doc><field name="mods.name">Rafael Oliveira da Silva</field><field name="mods.name">Prof. Dr. Johannes Gerardus de Vries</field><field name="mods.name">Prof. Dr. Joachim Wagner</field><field name="mods.name">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.name.top">Rafael Oliveira da Silva</field><field name="mods.name.top">Prof. Dr. Johannes Gerardus de Vries</field><field name="mods.name.top">Prof. Dr. Joachim Wagner</field><field name="mods.name.top">Universität Rostock Mathematisch-Naturwissenschaftliche Fakultät</field><field name="mods.author">Rafael Oliveira da Silva</field><field name="mods.place">Rostock</field><field name="mods.publisher">Universität Rostock</field><field name="mods.genre">epub.dissertation</field><field name="mods.identifier">10.18453/rosdok_id00001784</field><field name="mods.identifier">http://purl.uni-rostock.de/rosdok/id00001784</field><field name="mods.identifier">urn:nbn:de:gbv:28-diss2016-0098-7</field><field name="mods.subject">reduced graphene oxide (graphene)</field><field name="mods.subject">photocatalysis</field><field name="mods.subject">hydrogen evolution reaction</field><field name="mods.subject">semiconductors</field><field name="mods.subject">multicomponent aerogel</field><field name="mods.subject">metal oxides</field><field name="mods.abstract">The use of graphene as co-component for nanostructured materials has led to the claim of improving efficiencies of solar 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Die verschiedenen Studien dieser Arbeit zeigten jedoch, dass der Einfluss vielmehr fallsensitiv, wie beim Einsatz in multikomponenten Suspensionen, Aerogelen oder Elektroden, ist.</field><field name="mods.dateIssued">2016</field><field name="mods.yearIssued">2016</field><field name="mods.type">epub.dissertation</field><field name="search_result_link_text">1
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        rosdok/id00001784865833567MODS updated during RosDok migration in June 2021DissertationHochschulschrift1111522081RafaelOliveira da Silva1982-VerfasserInautMultilayer graphene in the interplay with different photocatalyst architectures for the hydrogen evolution reactionen132252880Prof. Dr.Johannes Gerardusde VriesUniversität Rostock, Leibniz-Institut für Katalysis e.V.AkademischeR BetreuerIndgs1016017537Prof. Dr.JoachimWagnerUniversität Rostock, Institut für Chemie, Physikalische ChemieAkademischeR BetreuerIndgs2147083-2Universität RostockMathematisch-Naturwissenschaftliche FakultätGrad-verleihende Institutiondgg10.18453/rosdok_id00001784http://purl.uni-rostock.de/rosdok/id00001784urn:nbn:de:gbv:28-diss2016-0098-7540 ChemieMathematisch-Naturwissenschaftliche Fakultätfrei zugänglich (Open Access)Lizenz Metadaten: CC0Nutzungsrechte erteiltalle Rechte vorbehaltenUniversität RostockRostock2016monographic20162016Universitätsbibliothek RostockRostock20162016The 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.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.reduced graphene oxide (graphene)photocatalysishydrogen evolution reactionsemiconductorsmulticomponent aerogelmetal oxidesUniversitätsbibliothek Rostockhttp://purl.uni-rostock.de/rosdok/id00001784
      
    
  
  
    
      2016-08-12T08:46:43.601Z
      2023-08-08T10:07:14.658Z
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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.</field><field name="mods.abstract">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.</field><field name="mods.dateIssued">2016</field><field name="mods.yearIssued">2016</field><field name="ir.identifier">[xslt]Saxon</field><field name="recordIdentifier">rosdok/id00001784</field><field name="purl">https://purl.uni-rostock.de/rosdok/id00001784</field><field name="ppn">865833567</field><field name="doi">10.18453/rosdok_id00001784</field><field name="urn">urn:nbn:de:gbv:28-diss2016-0098-7</field><field name="ir.creator.result">Rafael Oliveira da Silva</field><field name="ir.creator.sort">Oliveira da Silva Rafael</field><field name="ir.title.result">Multilayer graphene in the interplay with different photocatalyst architectures for the hydrogen evolution reaction</field><field name="ir.doctype.result">Dissertation</field><field name="ir.doctype_en.result">doctoral thesis</field><field name="ir.originInfo.result">Universität Rostock, 2016</field><field name="ir.abstract300.result">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…</field><field name="ir.creator_all">Rafael Oliveira da Silva</field><field name="ir.title_all">Multilayer graphene in the interplay with different photocatalyst architectures for the hydrogen evolution reaction</field><field name="ir.location_all">Universitätsbibliothek Rostock</field><field name="ir.location_all">http://purl.uni-rostock.de/rosdok/id00001784</field><field name="ir.creator_all">1111522081</field><field name="ir.creator_all">Rafael</field><field name="ir.creator_all">Oliveira da Silva</field><field name="ir.creator_all">1982-</field><field name="ir.creator_all"></field><field name="ir.creator_all">VerfasserIn</field><field name="ir.creator_all">aut</field><field name="ir.creator_all">132252880</field><field name="ir.creator_all">Prof. Dr.</field><field name="ir.creator_all">Johannes Gerardus</field><field name="ir.creator_all">de Vries</field><field name="ir.creator_all">Universität Rostock, Leibniz-Institut für Katalysis e.V.</field><field name="ir.creator_all"></field><field name="ir.creator_all">AkademischeR BetreuerIn</field><field name="ir.creator_all">dgs</field><field name="ir.creator_all">1016017537</field><field name="ir.creator_all">Prof. Dr.</field><field name="ir.creator_all">Joachim</field><field name="ir.creator_all">Wagner</field><field name="ir.creator_all">Universität Rostock, Institut für Chemie, Physikalische Chemie</field><field name="ir.creator_all"></field><field name="ir.creator_all">AkademischeR BetreuerIn</field><field name="ir.creator_all">dgs</field><field name="ir.creator_all">2147083-2</field><field name="ir.creator_all">Universität Rostock</field><field name="ir.creator_all">Mathematisch-Naturwissenschaftliche Fakultät</field><field name="ir.creator_all"></field><field name="ir.creator_all">Grad-verleihende Institution</field><field name="ir.creator_all">dgg</field><field name="ir.identifier">[doi]10.18453/rosdok_id00001784</field><field name="ir.identifier">[purl]http://purl.uni-rostock.de/rosdok/id00001784</field><field name="ir.identifier">[urn]urn:nbn:de:gbv:28-diss2016-0098-7</field><field name="ir.oai.setspec.open_access">open_access</field><field name="ir.pubyear_start">2016</field><field name="ir.pubyear_end">2016</field><field name="ir.epoch_class.facet">epoch:21th_century</field><field name="ir.language_class.facet">rfc5646:en</field><field name="ir.doctype_class.facet">doctype:epub.dissertation</field><field name="ir.accesscondition_class.facet">accesscondition:openaccess</field><field name="ir.sdnb_class.facet">SDNB:540</field><field name="ir.institution_class.facet">institution:unirostock.mnf</field><field name="ir.state_class.facet">state:published</field></doc></add>