Journal Article

·2014 OPEN ACCESS

Thermodynamic Characterization on Surface of Iron Oxide Nanoparticles Prepared by Co-precipitation: An Inverse Gas Chromatography Application

Seda Beyaz , Ferdane Karaman YTU

Asian Journal of Chemistry

Abstract

Surface thermodynamics of magnetic particles are crucial for many applications. In this study, a series of magnetic iron oxide nanoparticles were synthesized by co-precipitation at room temperature varying iron salts and base concentrations. The retention times of several organic solvents on these iron oxide nanoparticles were obtained in the temperature range from 323 to 363 K by inverse gas chromatography at infinite dilution. The dispersive component of surface free energy, S D , thermodynamic parameters of adsorption (free energy, G SP , enthalpy H SP , entropy, S SP ) and the acid KA and base KD constants were calculated for iron oxide samples. It was found that S D values fluctuated between 36 mJ/m 2 and 20 mJ/m 2 for all of the samples and temperatures. It was seen that the values of KD/KA were proportional with base concentration but inversely proportional with iron concentration. Hence it was arisen that the adsorption properties and acidbase contributions to the surface energy of iron oxide nanoparticles prepared by co-precipitation method altered considerably depending on the synthesis conditions. It can be said that the more effective surface modifications can be carried out adjusting synthesis conditions of iron oxide nanoparticles.

Keywords

Chemistry Inverse gas chromatography Characterization (materials science) Precipitation Gas chromatography Nanoparticle Oxide Chromatography Iron oxide Inverse Iron oxide nanoparticles Chemical engineering Organic chemistry Nanotechnology Meteorology

Subject Areas

Adsorption, diffusion, and thermodynamic properties of materials ·Spectroscopy ·Physical Sciences
nanoparticles nucleation surface interactions ·Atmospheric Science ·Physical Sciences
Catalysis and Oxidation Reactions ·Catalysis ·Physical Sciences