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Orientation of molecular groups of fibers in nonoriented samples determined by polarized ATR-FTIR spectroscopy

机译:偏振ATR-FTIR光谱法测定未取向样品中纤维的分子取向

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摘要

A method based on polarized attenuated total reflection Fourier transform infrared (ATR-FTIR) spectroscopy is proposed for determining the infrared dichroic absorption ratio of a single fiber from a sample deposited flat on a germanium crystal without the requirement of fiber orientation. The method shows its efficiency on cellulose fibers of paper and has been applied to protein fibers (type I collagen and β-amyloid) and polysaccharide fibers (cellulose and starch). The method gives access to the dichroic ratio of strong absorptions bands, which is not easily accessible with conventional absorption techniques. Then, the orientation of the molecular groups of organic fibers can be easily determined by polarized ATR-FTIR spectroscopy. By extension, this method will be useful to determine the molecular orientation of fibers in structured complex samples, such as biological tissues and plants. Spatially resolved information on the organization of the fiber network will be easily extracted by utilizing a focal plane array detector for imaging measurements.
机译:提出了一种基于偏振衰减全反射傅立叶变换红外光谱(ATR-FTIR)的方法,该方法无需沉积纤维就可以确定沉积在锗晶体上的样品中单纤维的红外二向色吸收率。该方法显示了其在纸纤维素纤维上的功效,已应用于蛋白质纤维(I型胶原和β-淀粉样蛋白)和多糖纤维(纤维素和淀粉)。该方法可获取强吸收带的二向色比,这是常规吸收技术不易获得的。然后,可以通过偏振ATR-FTIR光谱轻松确定有机纤维分子组的取向。通过扩展,该方法将对确定结构复杂样品(例如生物组织和植物)中纤维的分子取向很有用。通过使用焦平面阵列检测器进行成像测量,可以轻松提取有关光纤网络组织的空间分辨信息。

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