Molecular Photochemistry - Various Aspects by S. Saha

By S. Saha

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Zhao, J. ; Sun, S. G. & Xu, T. (2007). A Selective Fluorescent Sensor for Imaging Cd2+ in Living Cells. ; Ansari, M. B. & Samanta, A. (2006). pH-Regulated ‘‘Off– On’’ fluorescence signalling of d-block metal ions in aqueous media and realization of molecular IMP logic function. ; Banthia, S. & Samanta, A. (2006). A highly selective ‘off–on’ fluorescence chemosensor for Cr(III). ; Ichimura, C. & Hirai, T. (2007). A quinoline–polyamine conjugate as a fluorescent chemosensor for quantitative detection of Zn(II) in water.

2008b). All the prepared materials were calcined at 500°C for 3 or 5 hours. The abbreviation of materials was suffixed with a symbol x in parentheses to describe the original molar Ti/M or Si/M ratio in starting synthetic mixtures. , 2008a, 2008b, 2010). For MTiO2(M=V, Fe, Cu, Ce and Cr), a quartz chamber was irradiated vertically by a 300 W high-pressure xenon lamp located on the upper position. The wavelength was limited in the range of 220-420 nm by an optical filter and dimethyl sulfoxide was used as the solvent.

Tin oxide deposition proceeded by a photochemical reaction started with the disproportionation of Sn2+ and the further production of Sno and Photocatalytic Deposition of Metal Oxides on Semiconductor Particles: A Review 33 Sn4+. Then Sn4+ was hydrolized to the insoluble H2SnO3, which finally is decomposed to SnO2. Fig. 5. A schematic representation of the photocatalytic oxidation of metal oxides in presence of a conductive substrate (Pt film) and dissolved oxygen. After [Kamada and Moriyasu 2011].

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