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Improved Optical and Morphological Properties of Vinyl-Substituted Hybrid Silica Materials Incorporating a Zn-Metalloporphyrin

机译:含锌金属卟啉的乙烯基取代杂化二氧化硅材料的改进的光学和形态学性能

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摘要

This work is focused on a novel class of hybrid materials exhibiting enhanced optical properties and high surface areas that combine the morphology offered by the vinyl substituted silica host, and the excellent absorption and emission properties of 5,10,15,20-tetrakis(N-methyl-4-pyridyl)porphyrin-Zn(II) tetrachloride as a water soluble guest molecule. In order to optimize the synthesis procedure and the performance of the immobilized porphyrin, silica precursor mixtures of different compositions were used. To achieve the requirements regarding the hydrophobicity and the porous structure of the gels for the successful incorporation of porphyrin, the content of vinyltriacetoxysilane was systematically changed and thoroughly investigated. Substitution of the silica gels with organic groups is a viable way to provide new properties to the support. An exhaustive characterization of the synthesized silica samples was realised by complementary physicochemical methods, such as infrared spectroscopy (FT-IR), absorption spectroscopy (UV-Vis) and photoluminescence, nuclear magnetic resonance spectroscopy (29Si-MAS-NMR) transmission and scanning electron microscopy (TEM and SEM), nitrogen absorption (BET), contact angle (CA), small angle X ray and neutron scattering (SAXS and SANS). All hybrids showed an increase in emission intensity in the wide region from 575 to 725 nm (Q bands) in comparison with bare porphyrin. By simply tuning the vinyltriacetoxysilane content, the hydrophilic/hydrophobic profile of the hybrid materials was changed, while maintaining a high surface area. Good control of hydrophobicity is important to enhance properties such as dispersion, stability behaviour, and resistance to water, in order to achieve highly dispersible systems in water for biomedical applications.
机译:这项工作的重点是一类新的杂化材料,它们具有增强的光学性能和高表面积,结合了乙烯基取代的二氧化硅基质提供的形态,以及5,10,15,20-四(N)的优异吸收和发射性能-甲基-4-吡啶基)卟啉-四氯化锌(II)作为水溶性客体分子。为了优化合成工艺和固定化卟啉的性能,使用了不同组成的二氧化硅前体混合物。为了达到成功结合卟啉的凝胶的疏水性和多孔结构的要求,对乙烯基三乙酰氧基硅烷的含量进行了系统地改变和深入研究。用有机基团取代硅胶是为载体提供新特性的可行方法。通过互补的物理化学方法,如红外光谱(FT-IR),吸收光谱(UV-Vis)和光致发光,核磁共振光谱( 29 Si- MAS-NMR)传输和扫描电子显微镜(TEM和SEM),氮吸收(BET),接触角(CA),小角X射线和中子散射(SAXS和SANS)。与杂卟啉相比,所有杂种均显示出从575 nm到725 nm(Q波段)宽范围内的发射强度增加。通过简单地调节乙烯基三乙酰氧基硅烷的含量,改变了杂化材料的亲水/疏水特性,同时保持了高表面积。良好的疏水性控制对于增强诸如分散性,稳定性能和抗水性等性能非常重要,以便在生物医学应用中实现在水中的高度可分散体系。

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