Application of Biobased Substances in the Synthesis of Nanostructured Magnetic Core-Shell Materials

被引:5
|
作者
Peralta, Marcos E. [1 ]
Koffman-Frischknecht, Alejandro [1 ]
Moreno, M. Sergio [2 ]
Martire, Daniel O. [3 ]
Carlos, Luciano [1 ]
机构
[1] Univ Nacl Comahue, PROBIEN CONICET UNCo, Inst Invest & Desarrollo Ingn Proc, Biotecnol & Energias Alternat, RA-8300 Neuquen, Argentina
[2] Inst Nanociencia & Nanotecnol, Ctr At Bariloche, INN CNEA CONICET, Ave Bustillo 9500, RA-8400 San Carlos De Bariloche, Argentina
[3] Univ Nacl La Plata, Inst Invest Fisicoquim Teor & Aplicadas INIFTA, CCT La Plata CONICET, RA-1900 La Plata, Argentina
关键词
magnetic nanoparticles; magnetite; solvothermal synthesis; waste valorization; green chemistry; MESOPOROUS SILICA NANOPARTICLES; SOLVOTHERMAL SYNTHESIS; REMOVAL; FE3O4; SIZE; NANOMATERIALS; MICROSPHERES; BIOWASTE; SYSTEM;
D O I
10.3390/inorganics11010046
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
We propose here a novel green synthesis route of core-shell magnetic nanomaterials based on the polyol method, which uses bio-based substances (BBS) derived from biowaste, as stabilizer and directing agent. First, we studied the effect of BBS concentration on the size, morphology, and composition of magnetic iron oxides nanoparticles obtained in the presence of BBS via the polyol synthesis method (MBBS). Then, as a proof of concept, we further coated MBBS with mesoporous silica (MBBS@mSiO(2)) or titanium dioxide (MBBS@TiO2) to obtain magnetic nanostructured core-shell materials. All the materials were deeply characterized with diverse physicochemical techniques. Results showed that both the size of the nanocrystals and their aggregation strongly depend on the BBS concentration used in the synthesis: the higher the concentration of BBS, the smaller the sizes of the iron oxide nanoparticles. On the other hand, the as-prepared magnetic core-shell nanomaterials were applied with good performance in different systems. In particular, MBBS@SiO2 showed to be an excellent nanocarrier of ibuprofen and successful adsorbent of methylene blue (MB) from aqueous solution. MBBS@TiO2 was capable of degrading MB with the same efficiency of pristine TiO2. These excellent results encourage the use of bio-based substances in different types of synthesis methods since they could reduce the fabrication costs and the environmental impact.
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页数:13
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