Journal of Industrial and Engineering Chemistry, Vol.51, 106-112, July, 2017
An electrochemical nanofilm sensor for determination of 1-hydroxypyrene using molecularly imprinted receptors
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A novel electrochemical nanofilm sensor for 1-hydroxypyrene (1-OHP) was developed based on a molecular imprinted TiO2 gel matrix, which was prepared with Ti(O-n-Bu)4 and 1-OHP using sol.gel technology. Cyclic voltammetry (CV) showed that guest binding on the non-imprinted sensor resulted in nearly the same current changes for all guest molecules, indicating non-specific binding onto the TiO2 gel matrix. In contrast, binding at the molecular imprinted sensor revealed that the selectivity for 1-OHP relative to structurally related guest molecules was estimated to be 1.8-6.7 times greater at 1 x10-9 M, reflecting its specific adsorption and binding capacity for the template molecule.
Keywords:Molecular imprinting;TiO2 gel matrix;Electrochemical sensor;1-Hydroxypyrene;Polycyclic aromatic hydrocarbon
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