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-甲基哌啶的里德堡激发超快构象动力学。

Ultrafast conformational dynamics of Rydberg-excited -methyl piperidine.

机构信息

Department of Chemistry, Brown University, Providence, Rhode Island 02912, USA.

Department of Chemistry and Biochemistry, Western Connecticut State University, Danbury, Connecticut 06810, USA.

出版信息

Phys Chem Chem Phys. 2021 Dec 15;23(48):27417-27427. doi: 10.1039/d1cp04236j.

Abstract

We have observed the ultrafast conformational dynamics of electronically excited -methyl piperidine (NMP) using time-resolved Rydberg fingerprint spectroscopy. Optical excitation at various wavelengths ranging from 212 nm to 229 nm leads to the 3s or 3p Rydberg states and induces coherent oscillatory motions with periods of about 700 fs. These coherent motions survive the internal conversion from 3p to 3s but then dephase on a time scale of a few oscillations. Intramolecular vibrational energy redistribution on a picosecond time scale leads to an equilibrium between two conformeric structures that are separated in binding energy by 0.09 eV. Model calculations using the DFT-SIC method are in excellent agreement with the experiments and identify the conformers as the chair and twist structures of NMP. The analysis of the equilibrium parameters at long time delays as a function of excitation wavelength allows for the extraction of thermodynamic parameters for the conformeric transformation. We derive an enthalpy of the chair to twist reaction in the 3s excited state of 62 meV with an entropy of 19.70 J mol K. An activation energy of 276 meV is also obtained with a kinetic model.

摘要

我们使用时间分辨里德堡指纹谱法观察了电子激发的 -甲基哌啶(NMP)的超快构象动力学。在 212nm 至 229nm 的各种波长下进行光激发,会导致 3s 或 3p 里德堡态,并诱导具有约 700fs 周期的相干振荡运动。这些相干运动在从 3p 到 3s 的内转换中幸存下来,但随后在几个振荡的时间尺度上退相。皮秒时间尺度上的分子内振动能量再分配导致在结合能上分离 0.09eV 的两种构象异构体之间达到平衡。使用 DFT-SIC 方法的模型计算与实验非常吻合,并将构象异构体鉴定为 NMP 的椅式和扭曲结构。作为激发波长函数的长时间延迟下平衡参数的分析允许提取构象转化的热力学参数。我们得出 3s 激发态中椅式到扭曲反应的焓为 62meV,熵为 19.70JmolK。还通过动力学模型获得了 276meV 的活化能。

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