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MODIFICATION OF POLYAMIDE MEMBRANE BY SOL-GEL AND INCORPORATION OF LUMINESCENT EUROPIUM (III) COMPLEX

机译:溶胶-凝胶改性聚酰胺膜及掺入发光EURO(III)络合物

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Over the last decades, the combination of different technologies to search for systems with new properties and features has brought various segments of biological and earth sciences together. Additive manufacturing, known as rapid prototyping, combined with the sol-gel methodology enables the production of novel systems with applications in many scientific fields. In this work, flexible polyamide membranes were obtained by additive manufacturing, functionalized by the sol-gel methodology, and incorporated with the coordination compound between Eu(III) and 1,10-phenanthroline. The presence of vibrations at 1100 cm-1 in the FTIR spectrum of the material, which is a band typical of the Si-O-Si group in the alkoxide employed during the process, confirmed the polyamide membrane functionalization. The thermogravimetric curve showed that a residue remained after heating at 700 oC, which was attributed to SiO2. The membrane was highly luminescent, which confirmed incorporation of the Eu3+ compound into the material and pointed to the possible application of this system as a topical medication for the treatment of skin diseases.
机译:在过去的几十年中,不同技术的结合来寻找具有新特性和特征的系统,从而使生物科学和地球科学的各个领域融合在一起。增材制造(称为快速原型制作)与溶胶-凝胶方法相结合,使得能够生产在许多科学领域都有应用的新型系统。在这项工作中,通过添加制造获得了柔性聚酰胺膜,通过溶胶-凝胶法对其进行了功能化,并掺入了Eu(III)和1,10-菲咯啉之间的配位化合物。该材料在FTIR光谱中1100 cm-1处存在振动,该振动是该过程中所用醇盐中Si-O-Si基团的典型谱带,证实了聚酰胺膜的功能化。热重曲线表明,在700 oC加热后残留的残余物归因于SiO2。该膜是高发光的,这证实了将Eu3 +化合物掺入到材料中,并指出该系统可能作为局部药物治疗皮肤疾病。

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