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Using 2D Correlation Analysis to Enhance Spectral Information Available from Highly Spatially Resolved AFM-IR Spectra

机译:使用2D相关分析来增强可从高度空间分辨的AFM-IR光谱获得的光谱信息

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摘要

The recent combination of atomic force microscopy and infrared spectroscopy (AFM-IR) has led to the ability to obtain IR spectra with nanoscale spatial resolution, nearly two orders-of-magnitude better than conventional Fourier transform infrared (FT-IR) microspectroscopy. This advanced methodology can lead to significantly sharper spectral features than are typically seen in conventional IR spectra of inhomogeneous materials, where a wider range of molecular environments are coaveraged by the larger sample cross section being probed. In this work, two-dimensional (2D) correlation analysis is used to examine position sensitive spectral variations in datasets of closely spaced AFM-IR spectra. This analysis can reveal new key insights, providing a better understanding of the new spectral information that was previously hidden under broader overlapped spectral features. Two examples of the utility of this new approach are presented. Two-dimensional correlation analysis of a set of AFM-IR spectra were collected at 200-nm increments along a line through a nucleation site generated by remelting a small spot on a thin film of poly(3-hydroxybutyrate-co-3-hydroxyhexanoate). There are two different crystalline carbonyl band components near 1720 cm−1 that sequentially disappear before a band at 1740 cm−1 due to more disordered material appears. In the second example, 2D correlation analysis of a series of AFM-IR spectra spaced every 1 micrometer of a thin cross section of a bone sample measured outward from an osteon center of bone growth. There are many changes in the amide I and phosphate band contours, suggesting changes in the bone structure are occurring as the bone matures.
机译:原子力显微镜和红外光谱(AFM-IR)的最新组合已导致获得具有纳米级空间分辨率的红外光谱的能力,比传统的傅立叶变换红外(FT-IR)光谱学高出近两个数量级。与非均质材料的常规IR光谱相比,这种先进的方法可以产生明显更陡峭的光谱特征,在非均质材料中,通过探测更大的样品横截面,可以平均范围更广泛的分子环境。在这项工作中,二维(2D)相关分析用于检查紧密间隔的AFM-IR光谱数据集中的位置敏感光谱变化。该分析可以揭示新的关键见解,从而可以更好地理解以前隐藏在较宽的重叠光谱特征下的新光谱信息。给出了使用这种新方法的两个示例。沿通过通过成核位点的线以200 nm的增量收集一组AFM-IR光谱的二维相关性分析,该成核位点是通过重熔聚(3-羟基丁酸酯-co-3-羟基己酸酯)薄膜上的小斑点而产生的。在1720 cm -1 附近有两个不同的结晶羰基晶体能带,由于出现更多的无序物质,它们在1740 cm -1 的能带之前顺序消失。在第二个示例中,对一系列AFM-IR光谱进行2D相关性分析,该光谱在从骨骼生长的骨骼中心向外测量的骨骼样品薄截面的每1微米处间隔开。酰胺I和磷酸盐带的轮廓有很多变化,表明随着骨骼的成熟,骨骼结构也在发生变化。

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