Related Experiment Video
Updated: Sep 29, 2026

Photoelectron Imaging of Anions Illustrated by 310 Nm Detachment of F−
Published on: July 27, 2018
Anion photoelectron spectroscopy on xenon cluster anions, the simplest solvated electrons
Gaoxiang Liu1, Moritz Blankenhorn1, Rachel M Harris1
1Department of Chemistry, Johns Hopkins University, Baltimore, Maryland 21218, USA.
Abstract:
Xenon clusters had been predicted to form polarizability-bound anions and/or correlation-bound anions, Xen-, but despite their importance in understanding weak binding by excess electrons and the theoretical studies probing them, only their mass spectrometric observation by Haberland et al. [Phys. Rev. Lett. 63, 1219 (1989)] had revealed their viability. In this study, xenon atomic and cluster anions, Xen- (n = 1-54), were formed, and their anion photoelectron spectra were measured for n = 20-54. Each of these spectra exhibited two photoelectron peaks, i.e., one at an electron binding energy (EBE) around 0.2 eV and another at an EBE around 0.8 eV. The Xen- cluster anions associated with the lower EBE peaks were attributed to those in which their excess electrons are bound by aggregates of highly polarizable xenon atoms. The smallest stable size for this type of binding interaction had been predicted to be n ∼ 5. This is consistent with the extrapolation of a plot of the observed vertical detachment energy (VDE) values for the lower EBE peaks vs n-1/3 toward VDE = 0. These Xen- atomic cluster anions are presumably the simplest solvated electrons. The Xen- cluster anions associated with the higher EBE peaks were attributed to those in which an electronically metastable xenon atomic anion, Xe*-, is physisorbed, i.e., "solvated," by n - 1 Xe atoms, i.e., Xe*-(Xe)n-1.
Related Concept Videos
Ionic Bonding and Electron Transfer
Noble Gases
The elements in group 18 are noble gases (helium, neon, argon, krypton, xenon, and radon). They earned the name “noble” because they were assumed to be nonreactive since they have filled valence shells. In 1962, Dr. Neil Bartlett at the University of British Columbia proved this assumption to be false.
Electron Configuration of Multielectron Atoms
Ionization Energy
Electron Affinity
Electron Behavior

