研究目的
Investigating the threshold photoelectron spectrum and low-energy dissociative photoionization processes of formamide and acetamide to understand their electronic structure and fragmentation mechanisms.
研究成果
The study successfully assigned the first electronically excited states of formamide and acetamide, re-evaluated their adiabatic ionization energies, and provided a detailed understanding of their dissociative photoionization processes. The statistical model confirmed fast internal conversion between electronic states in formamide and explained the multiple dissociation channels in acetamide. The derived appearance energies were consistent with ab initio calculations and thermochemical data, revising some previous results.
研究不足
The study is limited to the low-energy dissociative photoionization processes of formamide and acetamide. The complexity of the acetamide TPES due to the large number of Franck–Condon active normal modes and the methyl rotation coordinate may introduce uncertainties in the assignments.