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Two-Dimensional Correlation Analysis of Polyimide Films using Attenuated Total Reflection-Based Dynamic Compression Modulation Step-Scan Fourier Transform Infrared Spectroscopy

机译:基于衰减全反射的动态压缩调制步进扫描傅里叶变换红外光谱的聚酰亚胺薄膜二维相关性分析

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摘要

Attenuated total reflection (ATR)-based dynamic compression modulationtwo-dimensional (2D) correlation study of poly(p-phenylene biphenyl-tetracarboximide) film is carried out in combination with spectral simulation analysis by density functional theory (DFT). The dynamic 2D infrared (IR) correlation spectra in the region of imide I (C(velence)O stretching mode) show three distinct correlation peaks located around 1777, 1725, and 1708 cm~(-1). The band at 1708 cm~(-1) is the lower wavenumber shift component of 1777 or 1735 cm~(-1) peaks and is attributed to the results from intermolecular interactions, according to the DFT analysis. The 1708 cm~(-1) band also shows the largest dynamic response, suggesting that these intermolecular interactions may enhance the dynamic response. The dynamic 2D IR correlation spectra in the region of imide II (C-N-C axial stretching mode) vibrations also show three correlation peaks located around 1335, 1355, and 1370 cm~(-1), although the imide II band is shown to consist substantially of one component by the DFT analysis. These multiple peaks may be attributed to the compression-induced wavenumber shift of the band in the backbone structures. The sequential analysis of 2D correlation data show that, upon applying the dynamic compression, the response of the backbone regions (imide II) occurs first, followed by that of the side-chain regions (imide I, C(velence)O).
机译:结合基于密度泛函理论(DFT)的光谱模拟分析,进行了基于衰减全反射(ATR)的动态压缩调制二维(2D)聚(对-亚苯基联苯-四甲酰亚胺)薄膜的二维相关性研究。酰亚胺I(C(velence)O拉伸模式)区域中的动态2D红外(IR)相关光谱显示了位于1777、1725和1708 cm〜(-1)附近的三个不同的相关峰。根据DFT分析,在1708 cm〜(-1)处的谱带是1777或1735 cm〜(-1)峰的较低波数漂移分量,归因于分子间相互作用的结果。 1708 cm〜(-1)波段也显示出最大的动态响应,表明这些分子间的相互作用可能会增强动态响应。在酰亚胺II(CNC轴向拉伸模式)振动区域中的动态2D IR相关光谱也显示了位于1335、1355和1370 cm〜(-1)附近的三个相关峰,尽管显示酰亚胺II带基本上由以下组成:通过DFT分析得出一种成分。这些多个峰可归因于主结构中带的压缩引起的波数移位。二维相关数据的顺序分析表明,在进行动态压缩后,首先出现主干区域(酰亚胺II)的响应,然后是侧链区域(酰亚胺I,C(velence)O)的响应。

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