Design of Magnetic Gelatine/Silica Nanocomposites by Nanoemulsification: Encapsulation versus in Situ Growth of Iron Oxide Colloids

被引:8
|
作者
Allouche, Joachim [1 ]
Chaneac, Corinne [2 ,3 ]
Brayner, Roberta [4 ]
Boissiere, Michel [5 ]
Coradin, Thibaud [2 ,3 ]
机构
[1] Univ Pau & Pays Adour, CNRS, Unite Mixte Rech UMR 5254, Equipe Chim Phys,Inst Pluridisciplinaire Rech Env, F-64053 Pau 09, France
[2] Univ Paris 06, UMR 7574, Chim Matiere Condensee Paris, F-75005 Paris, France
[3] Coll France, F-75005 Paris, France
[4] Univ Paris Diderot, UMR CNRS 7086, Interfaces Traitements Org & Dynam Syst ITODYS, F-75205 Paris 13, France
[5] Univ Cergy Pontoise, UFR Sci & Tech, Equipe Rech Relat Matrice Extracellulaire Cellule, EA 1391, F-95302 Cergy Pontoise, France
关键词
nanocomposites; gelatine; silica; iron oxide; nanoparticles; emulsion; SUPERPARAMAGNETIC NANOPARTICLES; PARTICLES; EXAMPLE; SIZE; NANOPLATFORMS; FLUORESCENCE; THERAPY; POLYMER; SYSTEMS;
D O I
10.3390/nano4030612
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The design of magnetic nanoparticles by incorporation of iron oxide colloids within gelatine/silica hybrid nanoparticles has been performed for the first time through a nanoemulsion route using the encapsulation of pre-formed magnetite nanocrystals and the in situ precipitation of ferrous/ferric ions. The first method leads to bi-continuous hybrid nanocomposites containing a limited amount of well-dispersed magnetite colloids. In contrast, the second approach allows the formation of gelatine-silica core-shell nanostructures incorporating larger amounts of agglomerated iron oxide colloids. Both magnetic nanocomposites exhibit similar superparamagnetic behaviors. Whereas nanocomposites obtained via an in situ approach show a strong tendency to aggregate in solution, the encapsulation route allows further surface modification of the magnetic nanocomposites, leading to quaternary gold/iron oxide/silica/gelatine nanoparticles. Hence, such a first-time rational combination of nano-emulsion, nanocrystallization and sol-gel chemistry allows the elaboration of multi-component functional nanomaterials. This constitutes a step forward in the design of more complex bio-nanoplatforms.
引用
收藏
页码:612 / 627
页数:16
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