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<title>
<string language="el">New hybrid materials with porphyrin-ferrocene and porphyrin-pyrene covalently linked to single-walled carbon nanotubes.</string>
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<entry>http://hdl.handle.net/10795/1557</entry>
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<subject>
<string language="el">Χημεία</string>
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<string language="el">Novel porphyrin derivatives bearing additional pyrene or ferrocene units as light harvesting antenna systems were synthesized and fully characterized. Following a covalent functionalization approach for single-walled carbon nanotubes (SWCNTs), stable SWCNT suspensions in common organic solvents 10 were produced. Subsequently, the resulting porphyrin-pyrene and porphyrin-ferrocene dyads were incorporated onto the nanotubes' backbone yielding donor-donor-acceptor hybrids. The resulting hybrid materials were soluble in common organic solvents and were characterized using micro-Raman, ATR-IR,
UV-Vis and photoluminescence spectroscopy, transmission electron microscopy, thermogravimetric analysis and εlectrochemistry. Photoluminescence quenching of the porphyrin emission in both hybrid 15 materials was detected thus suggesting the potentiality of these materials in photoelectrochemical cells.</string>
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<string language="el">7 pp.</string>
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<entity><![CDATA[BEGIN:VCARD
FN: Economopoulos, Solon P.
N: Economopoulos, Solon P.
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FN: Εθνικό Ίδρυμα Ερευνών
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<date>
<dateStamp>2015</dateStamp>
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<string language="el">Hybrid materials</string>
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<location>http://repository.edulll.gr/edulll/bitstream/10795/1557/2/1557_RSCAdv%282013%2c3%2c5539%29.pdf</location>
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FN:National Documentation Centre - National Hellenic Research Foundation
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<date><dateTime>2016-01-21T09:05:16Z</dateTime></date>
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