Magro Massimiliano, Bonaiuto Emanuela, Baratella Davide, de Almeida Roger Jessica, Jakubec Petr, Corraducci Vittorino, Tuček Jiri, Malina Ondrej, Zbořil Radek, Vianello Fabio
Department of Comparative Biomedicine and Food Science, University of Padua, Agripolis, Viale dell'Università 16, Legnaro, 35020, PD, Italy.
Regional Centre for Advanced Technologies and Materials, Palacky University, 17., listopadu 1192/12, 771 46, Olomouc, Czech Republic.
Chemphyschem. 2016 Oct 18;17(20):3196-3203. doi: 10.1002/cphc.201600718. Epub 2016 Aug 19.
A novel core-shell hybrid nanomaterial composed of peculiar maghemite nanoparticles (surface-active maghemite nanoparticles (SAMNs)) as the core and tannic acid (TA) as the shell was developed by self-assembly of ferric tannates onto the surface of SAMNs by simple incubation in water. The hybrid nanomaterial (SAMN@TA) was characterized by using UV/Vis, FTIR, and Mössbauer spectroscopies, magnetization measurements, and X-ray powder diffraction, which provide evidence of a drastic reorganization of the iron oxide surface upon reaction with TA and the formation of an outer shell that consists of a cross-linked network of ferric tannates. According to a Langmuir isotherm analysis, SAMN@TA offers one of most stable iron complexes of TA reported in the literature to date. Moreover, SAMN@TA was characterized by using electrical impedance spectroscopy, voltammetry, and chronoamperometry. The nanostructured ferric tannate interface showed improved conductivity and selective electrocatalytic activity toward the oxidation of polyphenols. Finally, a carbon-paste electrode modified with SAMN@TA was used for the determination of polyphenols in blueberry extracts by square-wave voltammetry.
通过在水中简单孵育,使鞣酸铁自组装到表面活性磁赤铁矿纳米颗粒(SAMNs)表面,制备了一种新型的核壳杂化纳米材料,其核心为特殊的磁赤铁矿纳米颗粒(表面活性磁赤铁矿纳米颗粒(SAMNs)),外壳为鞣酸(TA)。通过紫外可见光谱、傅里叶变换红外光谱、穆斯堡尔光谱、磁化测量和X射线粉末衍射对该杂化纳米材料(SAMN@TA)进行了表征,这些表征为与TA反应后氧化铁表面的剧烈重组以及由鞣酸铁交联网络组成的外壳的形成提供了证据。根据朗缪尔等温线分析,SAMN@TA是迄今为止文献报道中最稳定的TA铁配合物之一。此外,还通过电阻抗光谱、伏安法和计时电流法对SAMN@TA进行了表征。纳米结构的鞣酸铁界面表现出改善的导电性和对多酚氧化的选择性电催化活性。最后,将用SAMN@TA修饰的碳糊电极用于通过方波伏安法测定蓝莓提取物中的多酚。