Resonant Auger electron-ion-coincidence spectroscopy of N-methyltrifluoroacetamide: Site-specific fragmentation studies

被引:8
|
作者
Salen, Peter [1 ]
Schio, Luca [2 ,3 ]
Richter, Robert [4 ]
Alagia, Michele [2 ]
Stranges, Stefano [2 ,5 ]
Zhaunerchyk, Vitali [6 ]
机构
[1] Uppsala Univ, Dept Phys & Astron, FREIA Lab, S-75120 Uppsala, Sweden
[2] IOM CNR, TASC Lab, I-34149 Trieste, Italy
[3] Sapienza Univ Roma, Dipartimento Sci Base & Applicate Ingn, I-00185 Rome, Italy
[4] Elettra Sincrotrone Trieste, I-34149 Trieste, Italy
[5] Sapienza Univ Roma, Dipartimento Chim & Tecnol Farmaco, I-00185 Rome, Italy
[6] Univ Gothenburg, Dept Phys, S-41296 Gothenburg, Sweden
关键词
SELECTIVE DISSOCIATION; CORE IONIZATION; PHOTOEMISSION; EXCITATION; MOLECULES; DYNAMICS; DECAY; PHOTOFRAGMENTATION; PHOTOCHEMISTRY;
D O I
10.1103/PhysRevA.102.032817
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We present a theoretical and experimental study of the electronic structure of N-methyltrifluoroacetamide (FNMA) and examine the resonant Auger (RA) decay upon site- and state-specific excitation at the C 1s, N 1s, and O is edges. Based on the calculated energies for cationic states of 1 h and 2h-lp configurations, we assign the peaks of recorded VUV photoelectron and RA spectra. Specifically, we identify the spectral features associated with participator and spectator RA decay. To aid in a deeper understanding of previous observations of limited site-specific bond breaking in FNMA, the influence of the site-specific excitation and the character of the Auger decay on the fragmentation is investigated using Auger electron ion coincidence experiments. Moreover, to investigate the potentially different capacity for selective bond cleavage of participator and spectator Auger states, we apply this technique to the spectator Auger state with the main electronic configuration of (31a')(-1) (32e '')(-1) (34a '')(1) which is well resolved in the experimental spectrum. Finally, the influence of the molecular excess energy and the electronic character of the RA final states on fragmentation is addressed. Based on our findings, we argue that the excess energy the FNMA molecule gains upon RA decay is the dominant factor determining the fragmentation pattern.
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页数:11
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