| Literature DB >> 25226205 |
Galina Marzun1, Carmen Streich, Sandra Jendrzej, Stephan Barcikowski, Philipp Wagener.
Abstract
Adsorption of colloidal nanoparticles to surfaces and supports is a convenient approach to heterogeneous catalysts, polymer additives, or wastewater treatment. We investigated the adsorption efficiency of laser-generated and initially ligand-free platinum nanoparticles to TiO2 supports as a function of pH, ionic strength, and ligand surface coverage. The nanoparticle adsorption is dominantly controlled by electrostatic interactions: if the pH of the suspension is between the isoelectric point of the nanoparticles and the support, nanoparticles are adsorbed and transfer a net charge to the support. This charge-driven adsorption is not affected by steric repulsion due to various ligands attached to the nanoparticle surface. In addition to electrostatic interactions, colloidal stability given by moderate ionic strengths and pH values above the isoelectric point of nanoparticles are prerequisites for colloidal deposition.Entities:
Year: 2014 PMID: 25226205 DOI: 10.1021/la502588g
Source DB: PubMed Journal: Langmuir ISSN: 0743-7463 Impact factor: 3.882