Journal Article

·2016

The effects of substituent position on kinetics of benzene vapour adsorption onto 3-phenylphenoxy substituted metal-free and metallo-phthalocyanines thin films

Haytham Elzien Alamin Ali , Nursel Can YTU , Selçuk Altun , Zafer Odabaş

Dalton Transactions

Abstract

The preparation of metal-free, Zn(ii), In(iii), and Cu(ii)-phthalocyanines containing tetrakis-(3-phenylphenoxy) groups was achieved by employing 3-(3-phenylphenoxy)phthalonitrile (1) and 4-(3-phenylphenoxy)phthalonitrile (2) as starting materials. The phthalonitriles and phthalocyanines were characterized by elemental analysis, infrared, proton nuclear magnetic resonance, ultraviolet-visible, and matrix-assisted laser desorption/ionization time-of-flight mass spectroscopic techniques. The effect of the substituent group on the kinetics of benzene vapour adsorption onto these novel compounds was examined using three kinetics models: the pseudo first-order model, the Elovich equation, and a simple adsorption-desorption model. Results show that the benzene adsorption kinetics strongly depend on the position of the substituent groups.

Keywords

Substituent Benzene Kinetics Adsorption Metal Chemistry Photochemistry Materials science Polymer chemistry Inorganic chemistry Organic chemistry

Subject Areas

Porphyrin and Phthalocyanine Chemistry ·Materials Chemistry ·Physical Sciences
Photochromic and Fluorescence Chemistry ·Materials Chemistry ·Physical Sciences
Organic Electronics and Photovoltaics ·Electrical and Electronic Engineering ·Physical Sciences

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