Quenching of Photoactivity in Phthalocyanine Copper(II) -Titanate Nanotube Hybrid Systems

Titanate nanotubes (TiNTs) were obtained by hydrothermal treatment of anatase powder in aqueous NaOH solution and then modified with 2,9,16,23-tertracarboxyl phthalocyanine copper(II) (CuPc). This hybrid organic–inorganic nanoscopic system was characterized by X-ray diffraction, microscopy, and spec...

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Veröffentlicht in:Journal of physical chemistry. C 2011-06, Vol.115 (24), p.12082-12089
Hauptverfasser: Alves, W, Ribeiro, A. O, Pinheiro, M. V. B, Krambrock, K, Haber, F. El, Froyer, G, Chauvet, O, Ando, R. A, Souza, F. L, Alves, W. A
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Sprache:eng
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Zusammenfassung:Titanate nanotubes (TiNTs) were obtained by hydrothermal treatment of anatase powder in aqueous NaOH solution and then modified with 2,9,16,23-tertracarboxyl phthalocyanine copper(II) (CuPc). This hybrid organic–inorganic nanoscopic system was characterized by X-ray diffraction, microscopy, and spectroscopy. Transmission electron microscopy (TEM) images of pure and modified TiNTs revealed multiwall structures with an average outer diameter of 9 nm and a length of several hundred nanometers. The tubular morphology of the TiNTs was covered with CuPc-film. The amount of CuPc adsorbed onto the TiNTs was quantified by electron paramagnetic resonance (EPR). Using the same technique and spin-trapping methodology, the photogeneration of reactive oxygen species (ROS) from the TiNTs was systematically investigated. A drastic quenching of photoactivity was observed in the CuPc/TiNT hybrid system. Electron transfer from excited CuPc states to the TiNT conduction band followed by electron recombination may be the cause of this quenching.
ISSN:1932-7447
1932-7455
DOI:10.1021/jp202101r