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Mode-specific intermolecular vibrational energy transfer. II. Deuterated water and potassium selenocyanate mixture

机译:特定于模式的分子间振动能量转移。二。氘代水和硒氰酸钾混合物

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摘要

Vibrational energy transfer from the first excited state (2635 cm-1) of the O-D stretch of deuterated water (D_2 O) to the 0-1 transition (2075 cm-1) of the CN stretch of potassium selenocyanate (KSeCN) in their 2.5:1 liquid mixture was observed with a multiple-mode two dimensional infrared spectroscopic technique. Despite the big energy mismatch (560 cm-1) between the two modes, the transfer is still very efficient with a time constant of 20 ps. The efficient energy transfer is probably because of the large excitation coupling between the two modes. The coupling is experimentally determined to be 176 cm-1. An approximate analytical equation derived from the Landau-Teller formula is applied to calculate the energy transfer rate with all parameters experimentally determined. The calculation results are qualitatively consistent with the experimental data.
机译:振动能量从氘水(D_2 O)的OD延伸段的第一个激发态(2635 cm-1)到2.5微米的硒氰酸钾(KSeCN)的CN延伸段的0-1跃迁(2075 cm-1)传递用多模式二维红外光谱技术观察到1:1的液体混合物。尽管两种模式之间存在巨大的能量失配(560 cm-1),但在20 ps的时间常数下传输仍然非常有效。高效的能量传输可能是由于两种模式之间存在较大的激励耦合。通过实验确定该耦合为176 cm-1。应用从Landau-Teller公式得出的近似分析方程式,以实验确定的所有参数计算能量传递速率。计算结果在质量上与实验数据一致。

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