Accurate Vertical Ionization Energy and Work Function Determinations of Liquid Water and Aqueous Solutions
Stephan Th\"urmer, Sebastian Malerz, Florian Trinter, Uwe Hergenhahn,, Chin Lee, Daniel M. Neumark, Gerard Meijer, Bernd Winter, and Iain Wilkinson

TL;DR
This paper introduces a refined liquid microjet photoelectron spectroscopy technique with novel referencing procedures, enabling precise measurement of water's electronic energetics and work function, advancing understanding of aqueous solution reactivity.
Contribution
The study develops new referencing methods for liquid PES, allowing absolute quantification of water's ionization energy and work function, including solute effects, on a universal chemical potential scale.
Findings
Water's VIE determined as 11.33 eV with high precision.
Liquid water's work function measured as 4.73 eV.
Electronic structure of water remains robust at high salt concentrations.
Abstract
The absolute-scale electronic energetics of liquid water and aqueous solutions, both in the bulk and at associated interfaces, are the central determiners of water-based chemistry. However, such information is generally experimentally inaccessible. We demonstrate that a refined implementation of the liquid microjet photoelectron spectroscopy (PES) technique can be adopted to address this. Implementing concepts from condensed matter physics, we establish novel all-liquid-phase vacuum and equilibrated solution-metal-electrode Fermi level referencing procedures. This enables the precise and accurate quantification of previously elusive solute-induced perturbations of water's electronic energetics and vertical ionization energy (VIE) definition on an absolute and universal chemical potential scale. Applying these procedures over a broad range of ionization energies, we accurately and…
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