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Structural Thermal and Release Properties of Hybrid Materials Based on Layered Zinc Hydroxide and Caffeic Acid

机译:基于层状氢氧化锌和咖啡酸的杂化材料的结构热和释放性能

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摘要

Caffeic acid (CA) molecules were immobilized in a layered inorganic host matrix based on zinc hydroxide structures with different starting interlayer anions, nitrate, and acetate. The chemical composition, structure, thermal stability, morphology, and surface of the host matrices and hybrid compounds were analyzed by X-ray diffraction (XRD), themogravimetric/differencial thermal analysis (TG/DTA), Fourier transform infrarred spectroscopy (FT-IR), scanning electron microscopy (SEM), and X-ray photoelectron spectroscopy (XPS). Additionally, the surface charge of the materials was investigated using zeta potential at pH ~7. The results show an influence of the surface charge on the chemical, interaction, and structure of the resulting hybrid materials as a function of the starting layered structures. An expansion of the basal spacing to 10.20 Å for zinc hydroxide nitrate (ZHN), and a shrinkage to 10.37 Å for zinc hydroxide acetate (ZHA). These results suggest that the CA lies with a tilt angle in the interlayer region of the inorganic host matrix. The immobilization of CA is favored in ZHN, with respect to ZHA, because a single-layered phase was identified. A higher thermal stability at 65 °C was observed for ZHN-CA than for ZHA-CA. The evaluation of the release behavior showed a higher percentage of CA released from ZHN than ZHA, and the release mechanism was described by the Elovich model. The hybrid materials show potential characteristics for use as bioactive delivery systems.
机译:将咖啡酸(CA)分子固定在具有不同起始层间阴离子,硝酸根和乙酸根的氢氧化锌结构的层状无机主体基质中。通过X射线衍射(XRD),热重/差热分析(​​TG / DTA),傅立叶变换红外光谱(FT-IR)分析了基质和杂化化合物的化学组成,结构,热稳定性,形态和表面),扫描电子显微镜(SEM)和X射线光电子能谱(XPS)。此外,使用pH约为7的Zeta电位研究了材料的表面电荷。结果表明,表面电荷对所得杂化材料的化学,相互作用和结构的影响取决于起始层状结构。硝酸锌氢氧化物(ZHN)的基间距扩大到10.20Å,而乙酸锌氢氧化物(ZHA)的收缩率缩小到10.37Å。这些结果表明CA以倾斜角位于无机基质的中间层区域中。就ZHA而言,ZHN有利于CA的固定化,因为已鉴定出单层相。 ZHN-CA在65°C时的热稳定性高于ZHA-CA。释放行为的评估表明,从ZHN释放的CA的百分比高于ZHA,并且释放机理由Elovich模型描述。杂化材料显示出用作生物活性传递系统的潜在特性。

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