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Interfacial Oxidative Oligomerization of Catechol

机译:邻苯二酚的界面氧化低聚化

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摘要

The heterogeneous reaction between thin films of catechol exposed to O3(g) creates hydroxyl radicals (HO•) in situ, which in turn generate semiquinone radical intermediates in the path to form heavier polyhydroxylated biphenyl, terphenyl, and triphenylene products. Herein, the alteration of catechol aromatic surfaces and their chemical composition are studied during the heterogeneous oxidation of catechol films by O3(g) molar ratios ≥ 230 ppbv at variable relative humidity levels (0% ≤ RH ≤ 90%). Fourier transform infrared micro-spectroscopy, atomic force microscopy, electrospray ionization mass spectrometry, and reverse-phase liquid chromatography with UV–visible and mass spectrometry detection provide new physical insights into understanding the surface reaction. A Langmuir–Hinshelwood mechanism is accounted to report reaction rates, half-lives, and reactive uptake coefficients for the system under variable relative humidity levels. The reactions reported explain how the oligomerization of polyphenols proceeds at interfaces to contribute to the formation of brown organic carbon in atmospheric aerosols.
机译:暴露于 O3(g) 的儿茶酚薄膜之间的非均相反应原位产生羟基自由基 (HO•),而羟基自由基又在路径中产生半醌自由基中间体,形成较重的多羟基化联苯、三联苯和三苯产物。本文研究了在可变相对湿度水平 (0% ≤ RH ≤ 90%) 下,通过 O3(g) 摩尔比≥ 230 ppbv 对儿茶酚膜进行非均相氧化过程中儿茶酚芳香族表面的变化及其化学成分。傅里叶变换红外微光谱、原子力显微镜、电喷雾电离质谱以及反相液相色谱法与紫外-可见光和质谱检测为了解表面反应提供了新的物理见解。考虑了 Langmuir-Hinshelwood 机制来报告系统在可变相对湿度水平下的反应速率、半衰期和反应性摄取系数。报告的反应解释了多酚的寡聚化如何在界面处进行,从而导致大气气溶胶中棕色有机碳的形成。

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