Nanostructured Glasses Based on Hybrid Silica Materials Incorporating a New Asymmetrical Phenyl-Substituted Porphyrin

E. Fagadar-Cosma, C. Enache, Dana Vlascici, G. Fagadar-Cosma, H. Stadler, G. Bazylak
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引用次数: 6

Abstract

The new asymmetrical, phenyl substituted porphyrin structure, namely: 5,10,15-tris(3-hydroxy-phenyl)-20- (3,4-dimethoxy-phenyl)-21H,23H-porphyrin, along with the nanostructured glasses and silica-based nanoparticles embedded with this compound were synthetized and characterized as to be designated for potential use in construction of advanced optoelectronic devices or electrochemical sensors. This porphyrin was synthesized by a multicomponent Adler- Longo type reaction using two different substituted aldehydes, and next characterized by HPLC, TLC, MS, UV-vis, fluorescence spectroscopy, AFM, 1 H-NMR and 13 C-NMR analysis. The observed changes in UV-vis and emission spectra were also discussed in terms of various pH conditions. The series of novel porphyrin-silica nanomaterials have been prepared by using silica matrices obtained in two variable sol-gel processes, i.e. via the one step acid- or two steps acid- base-catalyzed hydrolysis and condensation of tetraethylorthosilicate. Especially, the hybrid monolithic glass nanomaterials obtained here via the one step acid-sol-gel procedure exhibited a high intensity of the emission spectra bands and, besides, a very sharp bathochromic shift in the red region towards 723 nm, thus making also these nanoparticles as the valuable source of potential second generation photosensitizers. In the atomic force microscopy (AFM) measurements this hybrid nanomaterials displayed the spherical and highly monodispersed particles of ultra low size (less than 70 nm and with an average height of 20 nm), controlled shape, high porosity, and superior stability as the potential water-insoluble photosensitizers.
含新型不对称苯基取代卟啉杂化二氧化硅材料的纳米结构玻璃
合成了新的不对称苯基取代卟啉结构,即:5,10,15-三(3-羟基苯基)-20-(3,4-二甲氧基苯基)- 21h, 23h -卟啉,以及嵌入该化合物的纳米结构玻璃和硅基纳米颗粒,并将其表征为在先进光电器件或电化学传感器的构建中具有潜在的应用前景。以两种不同的取代醛为原料,采用多组分Adler- Longo型反应合成了该卟啉,并通过HPLC、TLC、MS、UV-vis、荧光光谱、AFM、1h - nmr和13c - nmr对其进行了表征。讨论了不同pH条件下紫外可见光谱和发射光谱的变化。采用两种不同的溶胶-凝胶工艺,即通过一步酸催化或两步酸碱催化四乙硅酸水解缩合得到的硅基,制备了一系列新型卟啉-二氧化硅纳米材料。特别是,通过一步酸-溶胶-凝胶法获得的杂化单片玻璃纳米材料具有高强度的发射光谱带,并且在红色区域向723 nm方向有非常明显的色移,从而使这些纳米颗粒成为潜在的第二代光敏剂的宝贵来源。在原子力显微镜(AFM)测量中,该混合纳米材料显示出超低尺寸(小于70 nm,平均高度为20 nm)、可控形状、高孔隙率和优越稳定性的球形和高度单分散颗粒,是潜在的水不溶性光敏剂。
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