On the Formation of Hydrogen Peroxide in Water Microdroplets
Adair Gallo Jr., Nayara H. Musskopf, Xinlei Liu, Ziqiang Yang,, Jeferson Petry, Peng Zhang, Sigurdur Thoroddsen, Hong Im, Himanshu Mishra

TL;DR
This study demonstrates that hydrogen peroxide formation in water microdroplets is primarily driven by ozone transfer at the water surface, resolving previous uncertainties about the chemical mechanism involved.
Contribution
It provides comprehensive experimental evidence that ozone exposure is essential for H₂O₂ formation in water microdroplets, challenging prior hypotheses about electric field effects.
Findings
H₂O₂ formation depends on ozone concentration in the environment.
Microdroplets exposed to ozone produce 2-30 μM H₂O₂.
H₂O₂ formation is enhanced by increased surface area and contact time.
Abstract
Recent reports on the formation of hydrogen peroxide (HO) in water microdroplets produced via pneumatic spraying or capillary condensation have garnered significant attention. How covalent bonds in water could break under such conditions challenges our textbook understanding of physical chemistry and the water substance. While there is no definitive answer, it has been speculated that ultrahigh electric fields at the air-water interface are responsible for this chemical transformation. Here, we resolve this mystery via a comprehensive experimental investigation of HO formation in (i) water microdroplets sprayed over a range of liquid flow-rates, the (shearing) air flow rates, and the air composition (ii) water microdroplets condensed on hydrophobic substrates formed via hot water or humidifier under controlled air composition. Specifically, we assessed the contributions…
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Taxonomy
TopicsAdvanced Chemical Sensor Technologies
