Quantum-chemical approach to optimization of the synthesis conditions of two-component phosphorus-titanium oxide structures on silica surface


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Abstract

The features of formation of a two-component phosphorus-titanium oxide coating on the silica surface by sequential treatment of the substrate with POCl3 and TiCl4 vapors were analyzed with application of quantum-chemical approaches. An experimental synthesis of two-component coatings under conditions selected on the basis of theoretical calculations yielded coatings whose composition corresponded to the model predictions. The structure of the resulting coatings was studied by Fourier-transform IR spectroscopy, electronic diffuse reflectance spectroscopy, and chemical analysis.

About the authors

E. O. Drozdov

St. Petersburg State Institute of Technology (Technical University)

Email: dubroven@lti-gti.ru
Russian Federation, Moskovskii pr. 26, St. Petersburg, 190013

S. D. Dubrovenskii

St. Petersburg State Institute of Technology (Technical University)

Author for correspondence.
Email: dubroven@lti-gti.ru
Russian Federation, Moskovskii pr. 26, St. Petersburg, 190013

A. A. Malygin

St. Petersburg State Institute of Technology (Technical University)

Email: dubroven@lti-gti.ru
Russian Federation, Moskovskii pr. 26, St. Petersburg, 190013

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