Department of Chemistry, Tulane University, New Orleans, Louisiana 70118, USA.
J Phys Chem B. 2011 Sep 29;115(38):11063-73. doi: 10.1021/jp2066315. Epub 2011 Sep 7.
Vibrational energy relaxation and transport in a molecule that is far from thermal equilibrium can affect its chemical reactivity. Understanding the energy transport dynamics in such molecules is also important for measuring molecular structural constraints via relaxation-assisted two-dimensional infrared (RA 2DIR) spectroscopy. In this paper we investigated vibrational relaxation and energy transport in the ortho, meta, and para isomers of acetylbenzonitrile (AcPhCN) originated from excitation of the CN stretching mode. The amplitude of the cross-peak among the CN and CO stretching modes served as an indicator for the energy transport from the CN group toward the CO group. A surprisingly large difference is observed in both the lifetimes of the CN mode and in the energy transport rates for the three isomers. The anharmonic DFT calculations and energy transport modeling performed to understand the origin of the differences and to identify the main cross-peak contributors in these isomers described well the majority of the experimental results including mode excited-state lifetimes and the energy transport dynamics. The strong dependence of the energy transport on molecular structure found in this work could be useful for recognizing different isomers of various compounds via RA 2DIR spectroscopy.
远离热平衡的分子中的振动能量弛豫和输运可能会影响其化学反应性。理解此类分子中的能量输运动力学对于通过弛豫辅助二维红外(RA 2DIR)光谱法测量分子结构约束也很重要。在本文中,我们研究了源于 CN 伸缩模式激发的邻位、间位和对位乙酰苯甲腈(AcPhCN)异构体中的振动弛豫和能量输运。CN 和 CO 伸缩模式之间的交叉峰的幅度可用作能量从 CN 基团向 CO 基团输运的指标。三个异构体中,CN 模式的寿命和能量输运速率都存在惊人的差异。进行的非谐性 DFT 计算和能量输运建模有助于理解差异的起源,并确定这些异构体中主要的交叉峰贡献者,其对大多数实验结果(包括模式激发态寿命和能量输运动力学)进行了很好的描述。在这项工作中发现的能量输运对分子结构的强烈依赖性可用于通过 RA 2DIR 光谱法识别各种化合物的不同异构体。