An Effective Dialysis Method for Surface Funtionalization of Nanoparticles in Liquid Phase – Sample: Porphyrine derivatives @ ZnO-Nanorods

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In order to optimizing electron transfer and optoelectronic properties in nanoparticulate thin films for electronics we report on an efficient and fast method for surface functionalizing semiconducting metal oxide nanoparticles in liquid phase using a specific dialysis route. The dialysis process leads to a homogenous surface functionalization of nanoparticles with complex organic molecules: porphyrine derivatives. High resolution transmission electron (HRTEM) images verify the successful bonding of the molecules to the surface of the ZnO nanorods. Emission- and absorption- spectroscopy indicate an effective electronic interaction between the ZnO nanorods and the pophyrine derivatives. In addition, we discuss on the binding mechanism and the ligand exchange kinetics of the porphyrine molecules.

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Journal: TechConnect Briefs
Volume: 1, Nanotechnology 2013: Advanced Materials, CNTs, Particles, Films and Composites (Volume 1)
Published: May 12, 2013
Pages: 690 - 691
Industry sector: Advanced Materials & Manufacturing
Topics: Advanced Materials for Engineering Applications, Coatings, Surfaces & Membranes
ISBN: 978-1-4822-0581-7