López-López M T, Durán J D G, Delgado A V, González-Caballero F
Departamento de Física Aplicada, Facultad de Ciencias, Universidad de Granada, C/ Fuentenueva s/n, 18071 Granada, Spain.
J Colloid Interface Sci. 2005 Nov 1;291(1):144-51. doi: 10.1016/j.jcis.2005.04.099. Epub 2005 Jun 15.
This work describes the preparation and stability evaluation of suspensions consisting of hydrophobic magnetite nanoparticles dispersed in different organic solvents. The ferrite particles are covered by a shell of chemisorbed oleate ions following a procedure that is described in detail. The oleate-covered particles were dispersed in different organic solvents with dielectric constants, epsilon(r), ranging between 1.8 and 9, and the centrifugal field strength needed to remove particle aggregates formed during the synthesis was determined for the different liquid carriers used. A thermodynamic analysis demonstrated that the observed stability of the suspensions in liquids with epsilon(r) < 5 is well correlated with the very low lyophobic attraction between the particles. This can easily be surmounted by thermal agitation, since the van der Waals attraction is negligible. In contrast, for liquids with epsilon(r) > 9, the suspensions become unstable because of the combined action of the van der Waals and lyophobic attractions, the latter being dominant for very polar solvents. Finally, a complete magnetic characterization of the oleate-magnetite powder, as well as of several stable ferrofluids prepared with it, was carried out. From this characterization, the magnetic diameters and magnetic moments of the particles immersed in the different liquid carriers were estimated and compared to those corresponding to the dry magnetic particles. This made it possible to estimate the thickness of the nonmagnetic layer on the particles.
这项工作描述了由分散在不同有机溶剂中的疏水性磁铁矿纳米颗粒组成的悬浮液的制备和稳定性评估。按照详细描述的程序,铁氧体颗粒被化学吸附的油酸根离子壳层覆盖。将油酸包覆的颗粒分散在介电常数ε(r)在1.8至9之间的不同有机溶剂中,并针对所使用的不同液体载体确定了去除合成过程中形成的颗粒聚集体所需的离心场强。热力学分析表明,在ε(r)<5的液体中观察到的悬浮液稳定性与颗粒之间极低的疏液吸引力密切相关。由于范德华吸引力可忽略不计,这很容易被热搅动克服。相反,对于ε(r)>9的液体,由于范德华力和疏液吸引力的共同作用,悬浮液变得不稳定,后者在极性很强的溶剂中占主导地位。最后,对油酸包覆的磁铁矿粉末以及用其制备的几种稳定的铁磁流体进行了完整的磁性表征。通过该表征,估计了浸入不同液体载体中的颗粒的磁直径和磁矩,并将其与对应于干磁颗粒的磁直径和磁矩进行比较。这使得估计颗粒上非磁性层的厚度成为可能。