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Two-dimensional infrared spectroscopy of peptides by phase-controlled femtosecond vibrational photon echoes

机译:相控飞秒振动光子回波对肽段的二维红外光谱

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摘要

Two-dimensional infrared spectra of peptides are introduced that are the direct analogues of two- and three-pulse multiple quantum NMR. Phase matching and heterodyning are used to isolate the phase and amplitudes of the electric fields of vibrational photon echoes as a function of multiple pulse delays. Structural information is made available on the time scale of a few picoseconds. Line narrowed spectra of acyl-proline-NH2 and cross peaks implying the coupling between its amide-I modes are obtained, as are the phases of the various contributions to the signals. Solvent-sensitive structural differences are seen for the dipeptide. The methods show great promise to measure structure changes in biology on a wide range of time scales.
机译:引入了肽的二维红外光谱,该光谱是两脉冲和三脉冲多量子NMR的直接类似物。相位匹配和外差用于隔离振动光子回波电场的相位和振幅,该振幅是多个脉冲延迟的函数。结构信息的使用时间为几皮秒。获得了酰基脯氨酸-NH2的谱线窄光谱和暗示其酰胺-I模式之间耦合的交叉峰,以及对信号的各种贡献的相位也是如此。可见对二肽的溶剂敏感性结构差异。该方法显示了在广泛的时间尺度上测量生物学结构变化的巨大希望。

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