Casu Alberto, Casula Maria Francesca, Corrias Anna, Falqui Andrea, Loche Danilo, Marras Sergio, Sangregorio Claudio
Dipartimento di Scienze Chimiche and INSTM, Università di Cagliari, Cittadella Universitaria, 09042 (CA), Monserrato, Italy.
Phys Chem Chem Phys. 2008 Feb 21;10(7):1043-52. doi: 10.1039/b712719g. Epub 2007 Dec 10.
FeCo-SiO2 aerogel nanocomposites with different porosity were obtained using two different sol-gel procedures: the first involves a single acidic step and gives rise to relatively dense aerogels while the second procedure allows one to obtain highly porous aerogels using urea in the second step to promote fast gelation. Samples with different loading of FeCo equimolar alloy and with different Fe : Co ratios were prepared. The magnetic properties of all the nanocomposite aerogels were extensively studied as a function of porosity and composition. Particular attention was paid to the role played by the interparticle interactions, which are mediated by the silica matrix, in determining the collective magnetic behaviour. The kind and strength of magnetic interactions are affected by both the composition and the porosity of the matrix.
采用两种不同的溶胶 - 凝胶工艺制备了具有不同孔隙率的FeCo - SiO₂气凝胶纳米复合材料:第一种工艺包含单一酸性步骤,可得到相对致密的气凝胶;而第二种工艺则是在第二步使用尿素促进快速凝胶化,从而获得高度多孔的气凝胶。制备了具有不同FeCo等摩尔合金负载量以及不同Fe:Co比例的样品。全面研究了所有纳米复合气凝胶的磁性能随孔隙率和组成的变化。特别关注了由二氧化硅基质介导的颗粒间相互作用在决定集体磁行为中所起的作用。磁相互作用的种类和强度受基质的组成和孔隙率影响。