| Literature DB >> 26254665 |
B T Huang1, M Roger1, M Bonetti1, T J Salez1, C Wiertel-Gasquet1, E Dubois2, R Cabreira Gomes2, G Demouchy2, G Mériguet2, V Peyre2, M Kouyaté2, C L Filomeno2, J Depeyrot3, F A Tourinho3, R Perzynski2, S Nakamae1.
Abstract
The Seebeck and Soret coefficients of ionically stabilized suspension of maghemite nanoparticles in dimethyl sulfoxide are experimentally studied as a function of nanoparticle volume fraction. In the presence of a temperature gradient, the charged colloidal nanoparticles experience both thermal drift due to their interactions with the solvent and electric forces proportional to the internal thermoelectric field. The resulting thermodiffusion of nanoparticles is observed through forced Rayleigh scattering measurements, while the thermoelectric field is accessed through voltage measurements in a thermocell. Both techniques provide independent estimates of nanoparticle's entropy of transfer as high as 82 meV K(-1). Such a property may be used to improve the thermoelectric coefficients in liquid thermocells.Entities:
Year: 2015 PMID: 26254665 DOI: 10.1063/1.4927665
Source DB: PubMed Journal: J Chem Phys ISSN: 0021-9606 Impact factor: 3.488