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Effect of Gelatin on Secondary Structure, Crystallinity and Swelling Behavior of Silk Fibroin-Gelatin Hydrogelsand Its Application in Controlled Release of Nitrogen

机译:明胶对丝素蛋白 - 明胶水凝胶二次结构,结晶度和肿胀行为的影响及其在氮气控制释放中的应用

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Utilization of natural polymer as biodegradable matrix for the controlled releasing fertilizercan improve the performance of the materials and make them environmentally friendly. In this work, the effect of gelatin on the properties of hydrogels was investigated. The silk fibroin (SF)-gelatin hydrogels were prepared by solvent casting and β-crystallization of SF was promoted via methanol treatment. The secondary structure and the crystallinity of the blended hydrogels were in vestigatedusing Fourier transform infrared spectroscopy (FT-IR) and X-ray diffraction analysis (XRD), respectively. Moreover, the swelling ratio of the hydrogels and also their kinetics of nitrogen (N) release were also studied. Results from the FT-IR confirmed that no intermolecular interactions had taken place between SF and gelatin. Furthermore, the increase of gelatin content in the blended hydrogels caused the decrease of the SF crystallinity detected by XRD which corresponded to the swelling behavior of the hydrogel. The release rate of nitrogen (N) depends on the composition of SF and gelatin of which its value of diffusion exponent characteristics (n)determined from the Korsmeyer-Peppas model for all of the hydrogels are smaller than 0.5. This indicates that the release of N from the hydrogels isaquasi-Fickian diffusion. Moreover, the release rate (k) and diffusion coefficient (D) of the SF-gelatin hydrogels are lower than those of the SF itself indicating a potential to use the SF-gelatin hydrogel for nitrogen controlled release application.
机译:天然聚合物的利用作为可生物降解的基质,用于控制释放肥料的肥料,提高了材料的性能,使其成为环保的。在这项工作中,研究了明胶对水凝胶性质的影响。通过溶剂铸造制备丝素蛋白(SF) - 凝胶水凝胶,通过甲醇处理促进SF的β结晶。共混水凝胶的二级结构和结晶度分别在傅里叶变换红外光谱(FT-IR)和X射线衍射分析(XRD)中。此外,还研究了水凝胶的溶胀比和它们的氮气动力学(n)释放。来自FT-IR的结果证实,在SF和明胶之间没有发生分子间相互作用。此外,混合水凝胶中明胶含量的增加导致XRD检测到的SF结晶度降低,所述XRD对应于水凝胶的溶胀行为。氮气(n)的释放速率取决于Sf和明胶的组成,其中从克尔斯米蛋白-Pempas模型中确定的延伸指数特性(n)的值小于0.5。这表明来自水凝胶isaquasi-fickian扩散的n的释放。此外,SF-明胶水凝胶的剥离率(k)和扩散系数(d)低于SF本身的SF本身,表明使用SF-明胶水凝胶用于氮控制释放施用。

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