露水
化学
激进的
光化学
羟基自由基
露点
电子顺磁共振
羟基化
污染物
电子顺磁共振波谱
化学反应
产量(工程)
环境化学
化学成分
化学转化
氧化磷酸化
作者
ShaoPing Mi,Xiaochen Liu,Yishuai Pan,Junye Ma,Baoliang Chen,Chiheng Chu
标识
DOI:10.1021/acs.estlett.6c00162
摘要
Dew frequently forms on plant leaves, yet its chemical reactivity has long been overlooked. Here, we demonstrate that leaf dew can spontaneously generate hydroxyl radicals (•OH) during condensation, revealing dew as a previously unrecognized, redox-active interfacial reactor. Using controlled temperature-driven condensation–evaporation cycles combined with electron paramagnetic resonance and chemical probe quantification, we show that •OH is ubiquitously produced in dew at 5.7–23.9 nmol m–2 on diverse plant species and can be sustained over repeated dew-formation events. The yield of •OH is strongly regulated by leaf surface properties and environmental conditions, increasing with surface hydrophobicity, relative humidity, and lower temperatures. Enhanced hydrophobicity promotes the formation of spherical microdroplets with larger specific interfacial areas, confirming that •OH generation is primarily interface-driven. Moreover, we demonstrate that spontaneously generated •OH in dew can initiate the oxidative transformation of surface-deposited pollutants, exemplified by the hydroxylation of imidacloprid. These findings establish leaf dew as a transient but ubiquitous hotspot for oxidative chemistry, with potential implications for pollutant fate, vegetation-mediated self-purification, and biosphere–atmosphere interactions.
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