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Raman and surface enhanced Raman spectroscopy of amino acids and peptide

机译:拉曼和表面增强拉曼光谱氨基酸和肽

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Surface enhanced Raman scattering (SERS) is potentially tool in the characterization of biomolecules such as amino acids, complicated peptides and proteins, and even tissues or living cells. Amino acids and short peptides contain different functional groups. Therefore, they are suitable for the investigations of the competitive-interactions of these functional groups with colloidal silver surfaces. In this paper, Normal Raman and SERS of amino acids Leucine and Isoleucine and short peptide Leu-Leu were measured on the silver colloidal substrate. Raman shifts that stem from different vibrational mode in the molecular inner structure, and the variations of SERS of the samples were analyzed in this study. The results show that different connection of one methyl to the main chains of the isomer amino acids resulted in different vibration modes in the Normal Raman spectra of Leucine and Isoleucine. In the SERS spectra of the isomer amino acids, all frequency shifts are expressed more differently than those in Normal Raman spectra of solid state. Orientation of this isomer amino acids, as well as specific-competitive interactions of their functional groups with the colloidal silver surface, were speculated by detailed spectral analysis of the obtained SERS spectra. In addition, the dipeptide Leu-Leu, as the corresponding homodipeptide of Leucine, was also measured adsorbed on the colloidal silver surface. The SERS spectrum of Leu-Leu is different from its corresponding amino acid Leucine but both of them are adsorbed on the silver surface through the carboxylate moiety.
机译:表面增强拉曼散射(SERS)是潜在的工具,其在氨基酸,复杂的肽和蛋白质等生物分子中表征,甚至组织或活细胞。氨基酸和短肽含有不同的官能团。因此,它们适用于对胶体银表面的这些官能团的竞争相互作用的研究。在本文中,在银胶体基材上测量正常拉曼和氨基酸亮氨酸和异亮氨酸和短肽Leu-Leu。拉曼在分子内部结构中源于不同振动模式的转变,并在本研究中分析了样品的SERS的变化。结果表明,在亮氨酸和异亮氨酸的正常拉曼光谱中导致一个甲基与异构体氨基酸的主链不同的不同。在异构体氨基酸的SERS光谱中,所有频移比固态的正常拉曼光谱更不同。通过对所得SERS光谱的详细分析,通过对所得SERS光谱的详细光谱分析推测该异构体氨基酸的取向,以及它们的官能团与胶体银表面的官能团的相互作用。此外,还测量胶体银表面上的少氨酸的相应偶氨酸的二肽Leu-Leu。 Leu-Leu的SERS光谱与其相应的氨基酸亮氨酸不同,但它们两者都通过羧酸盐部分吸附在银表面上。

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