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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Structural dynamics in floppy systems: Ultrafast conformeric motions in rydberg-excited triethylamine
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Structural dynamics in floppy systems: Ultrafast conformeric motions in rydberg-excited triethylamine

机译:软盘系统中的结构动力学:莱德伯格激发的三乙胺中的超快构象运动

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摘要

Rotations about its three carbon-nitrogen bonds give triethylamine a complex, 3-dimensional potential energy landscape of conformeric structures. Electronic excitation to Rydberg states prepares the molecule in a high-energy, nonequilibrium distribution of such conformers, initiating ultrafast transitions between them. Time-resolved Rydberg electron binding energy spectra, observed using photoionization-photoelectron spectroscopy with ultrashort laser pulses, reveal these time-evolving structures. The time-dependent structural fingerprint spectra are assigned with the aid of a computational analysis of the potential energy landscape. Upon 209 nm electronic excitation to the 3p Rydberg state, triethylamine decays to 3s with a 200 fs time constant. The initially prepared conformer reacts to a mixture of structures with a time constant of 232 fs and settles into a final geometry distribution on a further subpicosecond time scale. The binding energy of the Rydberg electron is found to be an important determinant of the conformeric energy landscape.
机译:围绕其三个碳-氮键的旋转使三乙胺具有复杂的三维立体构象的3维势能态势。对里德堡州的电子激发使分子以这种构象异构体的高能非平衡分布进行制备,从而在它们之间引发超快转变。使用超短激光脉冲通过光电离-光电子能谱观察到的时间分辨的里德堡电子结合能谱揭示了这些随时间变化的结构。随时间变化的结构指纹图谱借助势能图的计算分析进行分配。在209 nm电子激发至3p Rydberg态时,三乙胺以200 fs的时间常数衰减至3s。最初准备的构象异构体会与时间常数为232 fs的结构混合物发生反应,并在另一个亚皮秒级的时间尺度上沉降为最终的几何分布。发现里德堡电子的结合能是构象能态的重要决定因素。

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