氨基硅化硅固载铁卟啉复合体系的研究

I. Šimkienė, J. Sabataitytė, A. Rėza, A. Suchodolskis, G. Babonas
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引用次数: 0

摘要

通过表面形貌和光学响应的研究,研究了氨基硅化硅衬底上的铁卟啉复合体系。以3-氨基丙基三乙氧基硅烷(APTES)为原料,在水、乙醇和丙酮中溶解,制备了不同的溶胶-凝胶前驱体,制备了硅衬底上的氨基功能化硅氧烷薄膜。采用浸泡法制备了APTES薄膜。将fepps的水溶液沉积在氨基硅化硅衬底上。利用原子力显微镜(AFM)技术研究了fepps /APTES/Si复合体系中纳米结构的形貌特征。高分辨率相衬成像显示了硅衬底上硅氧烷薄膜的亚结构和固定在氨基硅化硅表面上的fepps纳米聚体。在1 ~ 5 eV范围内进行了椭偏光谱测量,以表征硅氧烷薄膜和复合结构。对所得结果的分析表明,fepps分子是通过铁卟啉磺酸SO3-官能团和APTES (- nh2h +)-官能团之间的共价键附着在表面的。
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Studies of composite system of iron porphyrin immobilized on aminosilanized Si
Composite system of iron porphyrin (FeTPPS) on aminosilanized Si substrates was investigated by studies of surface morphology and optical response. Aminofunctionalized siloxane films on silicon substrates were produced from different sol-gel precursors prepared from 3-aminopropyltriethoxysilane (APTES) dissolved in water, ethanol and acetone. Immersion technique was used for the formation of APTES films. Aqueous solutions of FeTPPS were deposited on aminosilanized Si substrates. Topographic features of nanostructures in composite FeTPPS/APTES/Si system were investigated by atomic force microscopy (AFM) technique. High-resolution phase contrast imaging revealed the substructure of siloxane films on silicon substrates and nanoaggregates of FeTPPS immobilized on aminosilanized Si surface. Spectroscopic ellipsometry measurements were carried out in the region 1-5 eV in order to characterize the siloxane films and composite structures. The analysis of obtained results allowed one to conclude that FeTPPS molecules were attached to the surface by covalent bonds between the functional group of sulfonic acid SO3- of iron porphyrin and (-NH2H+)-group of APTES.
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