Chen Casey J, Avadhani Veena S, Williams Evan R
Department of Chemistry, University of California, Berkeley, CA, 94720, USA.
Angew Chem Int Ed Engl. 2025 May;64(19):e202424662. doi: 10.1002/anie.202424662. Epub 2025 Mar 17.
Formation of energetic species at the surface of aqueous microdroplets, including abundant hydroxyl radicals, oxidation products, and ionized N and O gas, has been previously attributed to the high electric field at the droplet surface. Here, evidence for a new mechanism for electronic excitation involving electron emission from negatively charged water droplets is shown. Droplet evaporation can lead to the emission of ions and droplet fission, but unlike positively charged droplets, negatively charged droplets can also shed charge by electron emission. With nanoelectrospray, no anions or negatively charged droplets are produced with a positive electrospray potential. In contrast, abundant O and HO(HO) are formed with negative electrospray. When toluene vapor is introduced with negative electrospray, abundant toluene radical cations and fragments are produced. Both O and toluene radical cations are produced with pneumatic nebulization. The electrons produced from evaporating negatively charged droplets can be accelerated by an external electric field in electrospray, or by the field generated between droplets with opposite polarities produced by pneumatic nebulization. This electron emission/ionization mechanism leads to electronic excitation >10 eV, and it may explain some of the surprising chemistries that were previously attributed to the high intrinsic electric field at the surface of aqueous droplets.
水性微滴表面高能物种的形成,包括大量的羟基自由基、氧化产物以及离子化的氮和氧气体,此前一直被归因于微滴表面的高电场。在此,展示了一种涉及从带负电的水滴发射电子的电子激发新机制的证据。微滴蒸发会导致离子发射和微滴裂变,但与带正电的微滴不同,带负电的微滴还能通过发射电子来释放电荷。采用纳米电喷雾时,在正电喷雾电位下不会产生阴离子或带负电的微滴。相反,在负电喷雾时会形成大量的O 和HO(HO)。当在负电喷雾时引入甲苯蒸气,会产生大量的甲苯自由基阳离子和碎片。通过气动雾化也会产生O 和甲苯自由基阳离子。从带负电的蒸发微滴产生的电子可在电喷雾中由外部电场加速,或由气动雾化产生的具有相反极性的微滴之间产生的电场加速。这种电子发射/电离机制导致电子激发>10 eV,并且它可能解释了一些先前归因于水性微滴表面高固有电场的令人惊讶的化学反应。