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Updated: May 21, 2025

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Disulfide Incorporated Pyridine and Pyridinium Push-Pull Dyes for Optical Sensing and Antifouling Electrodes
Andrew R Brotherton1, Naedum DomNwachukwu2, Matthew D Bailey1
1Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60206-3113, United States.
Abstract:
A new push-pull dye has been developed as a pH indicator when covalently copolymerized in a lipoic acid-based polymer (LA-Py). Furthermore, various charged forms of the dyes are investigated as antifouling diluents in self-assembled monolayers (SAMs) on gold electrodes. The dyes contain an amino donor incorporated into a seven-membered heterocyclic disulfide ring, a pyridine or pyridinium acceptor moiety, and an oligo-phenylene ethylene (OPE) conjugated bridge. A common characteristic of a push-pull dye is the high sensitivity to solvent dipoles such as the Stokes shifts of 176 and 211 nm for pyridine (Py) in acetonitrile and pyridinium (MePy) in chloroform, respectively. This is coupled with a decrease in quantum yields with increasing polarity of the solvents. The LA-Py has an apparent pKa of 3.5 and showed high sensitivity in acidic conditions with robust cycling between pH 7 and -0.08, producing an average contrast of 36% over 10 cycles. Incorporated into a SAM, the zwitterionic pyridinium sulfonate (SPy) derivative demonstrated antifouling to BSA by continuous monitoring of impedance with electrochemical impedance spectroscopy and ionic permeability of K3[FeCN6] by cyclic voltammetry. When "backfilled" with mercaptohexadecane (MHD), an enhanced SAM was formed (SPy + MHD), which showed resistance to ion penetration and improved antifouling.
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