Ueno Yuko, Ajito Katsuhiro
NTT Basic Research Laboratories, Atsugi, Kanagawa, Japan.
Anal Sci. 2007 Jul;23(7):803-7. doi: 10.2116/analsci.23.803.
Terahertz time-domain spectroscopy (THz-TDS) is used to study the intra- and intermolecular vibrational modes of aromatic carboxylic acids, for example, o-phthalic acid, benzoic acid, and salicylic acid, which form either intra- or intermolecular hydrogen bond(s) in different ways. Incorporating the target molecules in nano-sized spaces in mesoporous silicate (SBA-16) is found to be effective for the separate detection of intramolecular hydrogen bonding modes and intermolecular modes. The results are supported by an analysis of the differences in the peak shifts, which depend on temperature, caused by the different nature of the THz absorption. Raman spectra revealed that incorporating the molecules in the nano-sized pores of SBA-16 slightly changes the molecular structures. In the future, THz-TDS using nanoporous materials will be used to analyze the intra- and intermolecular vibrational modes of molecules with larger hydrogen bonding networks such as proteins or DNA.
太赫兹时域光谱(THz-TDS)用于研究芳香族羧酸(例如邻苯二甲酸、苯甲酸和水杨酸)的分子内和分子间振动模式,这些羧酸以不同方式形成分子内或分子间氢键。将目标分子纳入介孔硅酸盐(SBA-16)的纳米空间中,被发现对于分别检测分子内氢键模式和分子间模式是有效的。这些结果得到了对峰移差异分析的支持,峰移差异取决于温度,由太赫兹吸收的不同性质引起。拉曼光谱表明,将分子纳入SBA-16的纳米孔中会轻微改变分子结构。未来,使用纳米多孔材料的太赫兹时域光谱将用于分析具有更大氢键网络的分子(如蛋白质或DNA)的分子内和分子间振动模式。