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J Phys Chem A. 2006 Aug 31;110(34):10212-8. doi: 10.1021/jp062539a.
4
Rydberg fingerprint spectroscopy: a new spectroscopic tool with local and global structural sensitivity.里德伯指纹光谱法:一种具有局部和全局结构敏感性的新型光谱工具。
J Phys Chem A. 2005 Jun 9;109(22):4899-904. doi: 10.1021/jp0503866.
5
Control of local ionization and charge transfer in the bifunctional molecule 2-phenylethyl-N,N-dimethylamine using Rydberg fingerprint spectroscopy.
J Phys Chem A. 2005 Mar 10;109(9):1920-5. doi: 10.1021/jp046400g.
6
Energy flow and fragmentation dynamics of n,n-dimethylisopropylamine.
J Phys Chem A. 2006 Mar 30;110(12):4251-5. doi: 10.1021/jp0574706.

三甲胺最低里德堡态中的电子光谱与超快能量弛豫途径

Electronic spectroscopy and ultrafast energy relaxation pathways in the lowest Rydberg States of trimethylamine.

作者信息

Cardoza Job D, Rudakov Fedor M, Weber Peter M

机构信息

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

出版信息

J Phys Chem A. 2008 Oct 30;112(43):10736-43. doi: 10.1021/jp8041236. Epub 2008 Oct 4.

DOI:10.1021/jp8041236
PMID:18834091
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2659414/
Abstract

Resonance-enhanced multiphoton ionization photoelectron spectroscopy has been applied to study the electronic spectroscopy and relaxation pathways among the 3p and 3s Rydberg states of trimethylamine. The experiments used femtosecond and picosecond duration laser pulses at wavelengths of 416, 266, and 208 nm and employed two-photon and three-photon ionization schemes. The binding energy of the 3s Rydberg state was found to be 3.087 +/- 0.005 eV. The degenerate 3p x, y states have binding energies of 2.251 +/- 0.005 eV, and 3p z is at 2.204 +/- 0.005 eV. Using picosecond and femtosecond time-resolved experiments we spectrally and temporally resolved an intricate sequence of energy relaxation pathways leading from the 3p states to the 3s state. With excitation at 5.96 eV, trimethylamine is found to decay from the 3p z state to 3p x, y in 539 fs. The decay to 3s from all the 3p states takes place with a 2.9 ps time constant. On these time scales, trimethylamine does not fragment at the given internal energies, which range from 0.42 to 1.54 eV depending on the excitation wavelength and electronic state.

摘要

共振增强多光子电离光电子能谱已被用于研究三甲胺3p和3s里德堡态之间的电子光谱和弛豫途径。实验使用了波长为416、266和208nm的飞秒和皮秒持续时间的激光脉冲,并采用了双光子和三光子电离方案。发现3s里德堡态的结合能为3.087±0.005eV。简并的3p x、y态的结合能为2.251±0.005eV,3p z态为2.204±0.005eV。通过皮秒和飞秒时间分辨实验,我们在光谱和时间上解析了从3p态到3s态的复杂能量弛豫途径序列。在5.96eV激发下,发现三甲胺在539fs内从3p z态衰减到3p x、y态。从所有3p态到3s态的衰减以2.9ps的时间常数发生。在这些时间尺度上,三甲胺在给定的内能下不会发生碎片化,内能范围从0.42到1.54eV,这取决于激发波长和电子态。