English

Free electron charging of microdroplets in a plasma at atmospheric pressure

Plasma Physics 2025-09-23 v3

Abstract

Gas-phase microdroplets have recently demonstrated exceptional chemical properties via suspected mechanisms such as contact electrification and surface charge pinning, producing high surface electric fields. Here, microdroplets are injected into a low-temperature atmospheric-pressure plasma and exposed to an excess free-electron flux. We report the first measurements of droplet charge in a fully collisional plasma, with averages up to 2.5 ×105\times 10^{5} electrons for 15 μ\mum droplets, dependent on absorbed power. Simulations indicate solid particles under similar conditions acquire \sim40\% less charge, likely due to low-mobility water cluster ion formation around evaporating droplets, and predict surface electric fields up to 10710^{7} V m1^{-1} for the smallest droplets (3 μ\mum). Plasma exposure also produces H2_{2}O2_{2} in the liquid, with concentrations up to 33 mM, corresponding to remarkable generation rates exceeding 275 M s1^{-1}. The system involves complex, not yet fully elucidated mechanisms. A controlled plasma environment enables defined charge levels and exposure times, allowing systematic study and enhancing droplet properties.

Keywords

Cite

@article{arxiv.2508.13372,
  title  = {Free electron charging of microdroplets in a plasma at atmospheric pressure},
  author = {Nourhan Hendawy and Harold McQuaid and Somhairle Mag Uidhir and David Rutherford and Declan Diver and Davide Mariotti and Paul Maguire},
  journal= {arXiv preprint arXiv:2508.13372},
  year   = {2025}
}

Comments

Main manuscript 7 pages. Supplementary information 14 pages. Submitted to Nature Communications