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Published on: June 23, 2016
Suppression of salt-induced aggregation of 4-mercaptobenzoic acid functionalized gold nanoparticles by aromatic dye
Kazi Mohammed Mehedi Hassan1, Towfiq Ahmed Chowdhury1, Monika Tarafdar1
1Department of Chemistry, School of Physical Sciences, Shahjalal University of Science and Technology Sylhet 3114 Bangladesh saifulalam-che@sust.edu.
Abstract:
The colloidal instability of ligand-functionalized gold nanoparticles under electrolyte-rich conditions limits their application in plasmonic sensing. Here, 4-mercaptobenzoic acid-functionalized gold nanoparticles (Au-4MBA) were investigated for their aggregation behavior in NaCl-containing media and stabilization by aromatic dyes. Au-4MBA nanoparticles exhibited an LSPR band at 524 nm, while exposure to 5 mM NaCl induced aggregation, characterized by a secondary plasmon band at ∼670 nm and a visible color change. Congo Red (CR) progressively suppressed this aggregation-associated response with increasing concentration. The colloidal stability was strongly pH-dependent but remained relatively insensitive to temperature over 10-50 °C. Comparative evaluation of structurally distinct dyes revealed different stabilization behaviors, following the order CR ≈ Erythrosine B > Methyl Orange > Alizarin Red S >> Methylene Blue. These differences are consistent with a structure-dependent influence of aromatic dyes on nanoparticle stability. The experimental observations support a proposed electrosteric stabilization mechanism involving possible interfacial association and noncovalent interactions that restrict close nanoparticle approach and plasmonic coupling. These findings provide a simple strategy for improving the electrolyte stability of ligand-functionalized plasmonic nanoparticles.

