Velocity Map Imaging Photoelectron Spectroscopy of Silver Iodide Aerosol Particles

Author:

Danilović Danijela1ORCID,Nahon Laurent2ORCID,Garcia Gustavo A.2ORCID,Milosavljević Aleksandar R.2ORCID,Vukmirović Nenad3ORCID,Dojčilović Radovan1ORCID,Tošić Dragana1ORCID,Djoković Vladimir1ORCID,Božanić Dušan K.1ORCID

Affiliation:

1. Center of Excellence for Photoconversion Vinča Institute of Nuclear Sciences - National Institute of Republic of Serbia University of Belgrade P.O. Box 522 11001 Belgrade Serbia

2. Synchrotron SOLEIL St. Aubin, BP48 91192 Gif sur Yvette Cedex France

3. Institute of Physics Belgrade University of Belgrade Pregrevica118 11080 Belgrade Serbia

Abstract

AbstractThe valence band electronic structure of isolated silver iodide nanoparticles (AgI NP) was investigated by vacuum‐ultraviolet aerosol photoelectron spectroscopy using the velocity map imaging technique (VUV VMI‐PES). The VUV VMI‐PES results were obtained for polydisperse aerosol produced by aggregation of hydrocolloid of silver iodide particles 8–15 nm in size. The ionization energy of the AgI particles was found to be 6.0±0.1 eV with respect to the vacuum level. The DFT calculations showed that the main contribution to the density of AgI electronic states in the valence region originates from I 5p orbitals. The dependence of the asymmetry parameter on the electron energy showed that the value of the characteristic energy loss of excited photoelectrons was 2.7 eV, which coincided with the band gap of the nanomaterial.

Funder

Institute of Physics Belgrade

Publisher

Wiley

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