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Dynamics at conical intersections: The influence of O-H stretching vibrations on the photodissociation of phenol

机译:圆锥形交叉处的动力学:O-H拉伸振动对苯酚的光解离的影响

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Comparing the recoil energy distributions of the fragments from one-photon dissociation of phenol-d(5) with those from vibrationally mediated photodissociation shows that initial vibrational excitation strongly influences the disposal of energy into relative translation. The measurements use velocity map ion imaging to detect the H-atom fragments and determine the distribution of recoil energies. Dissociation of phenol-d(5) molecules with an initially excited O-H stretching vibration produces significantly more fragments with low recoil energies than does one-photon dissociation at the same total energy. The difference appears to come from the increased probability of adiabatic dissociation in which a vibrationally excited molecule passes around the conical intersection between the dissociative state and the ground state to produce electronically excited phenoxyl-d(5) radicals. The additional energy deposited in electronic excitation of the radical reduces the energy available for relative translation. (c) 2008 American Institute of Physics.
机译:比较酚-d(5)的单光子解离的片段的反冲能量分布与振动介导的光解离的片段的反冲能量分布表明,初始振动激发强烈影响能量转化为相对平移。这些测量使用速度图离子成像来检测H原子碎片并确定反冲能量的分布。苯酚-d(5)分子在最初激发的O-H拉伸振动下的解离产生的回缩能量低得多的碎片比在相同总能量下的单光子解离要多。差异似乎来自绝热解离的可能性增加,在绝热解离中,振动激发的分子绕过解离态和基态之间的圆锥形交点而产生电子激发的苯氧基-d(5)自由基。自由基的电子激发中沉积的额外能量减少了可用于相对平移的能量。 (c)2008年美国物理研究所。

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