几丁质纳米晶须的形态与光谱研究

Violeta Campos-Cornelio, N. Flores-Ramírez, S. R. Vasquez‐Garcia, L. Domratcheva-Lvova, L. García-González
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引用次数: 0

摘要

制备了几丁质纳米晶须,并将其作为虾青素的光降解和热降解保护剂。这些纳米结构是通过两种搅拌方法(机械搅拌和超声搅拌)的冷冻/解冻过程产生的,分别被称为FTM和FTS。利用扫描电镜(SEM)和傅里叶变换红外光谱(FTIR)对甲壳素纳米晶须进行了形貌和光谱学研究。通过扫描电镜分析,发现甲壳素纤维间距均匀,取向均匀,宽度在20 ~ 40 nm之间。此外,通过FTM获得的纳米须具有长而扁平的结构和均匀大小的束,具有成为应力集中部位的能力。相比之下,通过FTS,纳米晶须显示出大量的粗纤维峰。通过两种方法的比较,我们认识到FTS方法提供了更大的表面积,提供了更多的功能化位点。傅里叶变换红外光谱(FTIR)可以测定FTM和FTS方法获得的样品表面官能团的自由运动。光谱信号的显著差异表明,傅里叶变换获得的纳米须中有更多的非缔合酰胺。
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Morphological and Spectroscopic Studies of Chitin Nanowhiskers
Chitin nanowhiskers were obtained with the purpose to be used as astaxanthin protectors against the photo and thermal degradation. These nanostructures were generated by a freezing/thawing procedure using two stirring methods: mechanical and sonication, which were named as FTM and FTS respectively. Morphological and spectroscopic studies were carried out on chitin nanowhiskers by scanning electronic microscopy (SEM) and Fourier transform infrared spectroscopy (FTIR). Through a SEM analysis, chitin fibers were found uniformly spaced and oriented with the width ranged from of 20-40 nm. Furthermore, the nanowhiskers obtained by FTM showed long and flattened structures and bundles of homogeneous sizes, which have the capacity of being sites of stress concentration. In contrast, by FTS, the nanowhiskers showed coarse fibers exhibiting numerous peaks. By comparing the two methods is appreciated that FTS method provides more surface area, giving more sites for functionalization. Fourier transform infrared spectroscopy (FTIR) allowed the determination of free movement of functional groups on the surface of samples obtained by FTM and FTS methods. Significant differences of signals in the spectra indicate that there were more unassociated amides in the nanowhiskers obtained by FTS than by FTM.
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