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<titleInfo><title>Binary Polyethylene Oxide/Titania Solid-State Redox Electrolyte for Highly Efficient Nanocrystalline TiO2 Photoelectrochemical Cells</title></titleInfo>


<note type="publicationStatus">published</note>



<name type="personal">
  <namePart type="given">Thomas</namePart>
  <namePart type="family">Stergiopoulos</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">Iannis</namePart>
  <namePart type="family">Arabatzis</namePart>
  <role><roleTerm type="text">author</roleTerm> </role></name>
<name type="personal">
  <namePart type="given">Georgios</namePart>
  <namePart type="family">Katsaros</namePart>
  <role><roleTerm type="text">author</roleTerm> </role><identifier type="local">38DB5788-F248-11E8-B48F-1D18A9856A87</identifier></name>
<name type="personal">
  <namePart type="given">Polycarpos</namePart>
  <namePart type="family">Falaras</namePart>
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<abstract lang="eng">Poly(ethylene oxide)/titania polymer electrolyte based photoelectrochemical cells have been fabricated with Ru(dcbpy)2(NCS)2 complex as the sensitizer and nanoporous TiO2 films as photoanodes. The introduction of the titania filler into the poly(ethylene oxide) matrix reduces the crystallinity of the polymer and enhances the mobility of the 1-/13 - redox couple, resulting in outstanding overall conversion efficiency (4.2% under direct sunlight illumination) of the corresponding dye-sensitized nanocrystalline TiO2 solar cell, one of the best efficiencies reported to date for a solid-state device.</abstract>

<originInfo><publisher>American Chemical Society</publisher><dateIssued encoding="w3cdtf">2002</dateIssued>
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<relatedItem type="host"><titleInfo><title>Nano Letters</title></titleInfo><identifier type="doi">10.1021/nl025798u</identifier>
<part><detail type="volume"><number>2</number></detail><detail type="issue"><number>11</number></detail><extent unit="pages">1259 - 1261</extent>
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<ama>Stergiopoulos T, Arabatzis I, Katsaros G, Falaras P. Binary Polyethylene Oxide/Titania Solid-State Redox Electrolyte for Highly Efficient Nanocrystalline TiO2 Photoelectrochemical Cells. &lt;i&gt;Nano Letters&lt;/i&gt;. 2002;2(11):1259-1261. doi:&lt;a href=&quot;https://doi.org/10.1021/nl025798u&quot;&gt;10.1021/nl025798u&lt;/a&gt;</ama>
<ieee>T. Stergiopoulos, I. Arabatzis, G. Katsaros, and P. Falaras, “Binary Polyethylene Oxide/Titania Solid-State Redox Electrolyte for Highly Efficient Nanocrystalline TiO2 Photoelectrochemical Cells,” &lt;i&gt;Nano Letters&lt;/i&gt;, vol. 2, no. 11. American Chemical Society, pp. 1259–1261, 2002.</ieee>
<mla>Stergiopoulos, Thomas, et al. “Binary Polyethylene Oxide/Titania Solid-State Redox Electrolyte for Highly Efficient Nanocrystalline TiO2 Photoelectrochemical Cells.” &lt;i&gt;Nano Letters&lt;/i&gt;, vol. 2, no. 11, American Chemical Society, 2002, pp. 1259–61, doi:&lt;a href=&quot;https://doi.org/10.1021/nl025798u&quot;&gt;10.1021/nl025798u&lt;/a&gt;.</mla>
<ista>Stergiopoulos T, Arabatzis I, Katsaros G, Falaras P. 2002. Binary Polyethylene Oxide/Titania Solid-State Redox Electrolyte for Highly Efficient Nanocrystalline TiO2 Photoelectrochemical Cells. Nano Letters. 2(11), 1259–1261.</ista>
<short>T. Stergiopoulos, I. Arabatzis, G. Katsaros, P. Falaras, Nano Letters 2 (2002) 1259–1261.</short>
<apa>Stergiopoulos, T., Arabatzis, I., Katsaros, G., &amp;#38; Falaras, P. (2002). Binary Polyethylene Oxide/Titania Solid-State Redox Electrolyte for Highly Efficient Nanocrystalline TiO2 Photoelectrochemical Cells. &lt;i&gt;Nano Letters&lt;/i&gt;. American Chemical Society. &lt;a href=&quot;https://doi.org/10.1021/nl025798u&quot;&gt;https://doi.org/10.1021/nl025798u&lt;/a&gt;</apa>
<chicago>Stergiopoulos, Thomas, Iannis Arabatzis, Georgios Katsaros, and Polycarpos Falaras. “Binary Polyethylene Oxide/Titania Solid-State Redox Electrolyte for Highly Efficient Nanocrystalline TiO2 Photoelectrochemical Cells.” &lt;i&gt;Nano Letters&lt;/i&gt;. American Chemical Society, 2002. &lt;a href=&quot;https://doi.org/10.1021/nl025798u&quot;&gt;https://doi.org/10.1021/nl025798u&lt;/a&gt;.</chicago>
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