Synthesis of ureasil-polyether film forming materials by using environmentally friendly solvent

Juliana Fernandes Mendes, João Augusto Oshiro Junior, Camila G. Silva, L. A. Chiavacci
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引用次数: 2

Abstract

Organic inorganic hybrids present several advantages as drug release systems, such as: high flexibility, high mechanical and thermal resistance, transparency, and low water solubility. These hybrids are synthesized through a chemical route named sol-gel that usually uses as solvente tetrahydrofuran (THF). Objetives: To develop film formers from hybrid materials replacing THF with ethanol, a less toxic solvent for skin application and for the environment. Methods: Four polymers were used: two based on polyethylene oxide (PEO) with molecular weight of 500 and 1900 g mol-1 and two based on polypropylene oxide (PPO), with molecular weight of 400 and 2000 g mol-1. The structural analysis was performed by FTIR, 1H-NMR and 29Si-NMR, and the thermal-mechanical analysis by DSC and TG-DTA. Results: The results of the thermo-mechanical analysis revealed that the solvent replacement did not affect the thermal stability and flexibility of the di-ureasil hybrid. Conclusions: Structural characterization confirmed the formation of hybrids both in THF and in ethanol. Therefore, ethanol is an excellent solvent for the synthesis of these hybrid matrices, since it allows obtaining the same material without changing its characteristics, with some advantages, however, over THF. Furthermore, this paper describes the efficiency of ethanol as a solvent, which is environmentally friendly, to replace THF in the physical-chemical characteristics of these filming former materials.
利用环保溶剂合成脲醇聚醚成膜材料
有机无机杂化物作为药物释放系统具有高柔韧性、高机械和热阻、透明度和低水溶性等优点。这些杂化物是通过一种称为溶胶-凝胶的化学途径合成的,通常使用四氢呋喃(THF)作为溶剂。目的:用乙醇(一种对皮肤和环境都无害的低毒性溶剂)代替四氢呋喃制备成膜材料。方法:采用四种聚合物:两种分子量分别为500和1900 g mol-1的聚氧聚乙烯(PEO)和两种分子量分别为400和2000 g mol-1的聚氧聚丙烯(PPO)。采用FTIR、1H-NMR和29Si-NMR进行结构分析,DSC和TG-DTA进行热力学分析。结果:热力学分析结果表明,溶剂替代对双脲醇杂化物的热稳定性和柔韧性没有影响。结论:结构表征证实在四氢呋喃和乙醇中均能形成杂种。因此,乙醇是合成这些混合基质的优良溶剂,因为它可以在不改变其特性的情况下获得相同的材料,然而,与四氢呋喃相比,它有一些优势。此外,本文还描述了乙醇作为一种环境友好的溶剂,在这些薄膜原材料的物理化学特性上取代四氢呋喃的效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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