NERL/ERD, United States Environmental Protection Agency, Athens Georgia 30605, United States.
Environ Sci Technol. 2013 Jun 18;47(12):6189-96. doi: 10.1021/es304985w. Epub 2013 Jun 4.
Effects of natural organic matter (NOM) on the photoreaction kinetics of fullerenes (i.e., C60 and fullerenol) were investigated using simulated sunlight and monochromatic radiation (365 nm). NOM from several sources quenched (slowed) the photoreaction of C60 aggregates in water (aqu/nC60), but sensitized (accelerated) photoreaction of fullerenol. Kinetic studies indicated that the quenching occurred through a static mechanism involving NOM molecules adsorbed on the aqu/nC60 surface. Quenching constants for the photoreaction of aqu/nC60 correlated approximately with optical parameters related to the aromaticity and molecular size of the NOM. Association of aqu/nC60 particles with NOM was investigated indirectly via the study of the aggregation kinetics of colloidal C60 in the presence and absence of NOM as a function of NaCl strength at pH 7. In contrast to aqu/nC60, the photoreaction efficiencies of the hydrophilic fullerene, fullerenol, increased linearly with increasing NOM concentrations and kinetic parameters for the sensitized photoreactions increased as the spectral slope coefficients and ratio of absorption coefficients at 254 to 365 nm (E2:E3) of the NOM increased. The results indicate that triplet excited states of the NOM are key intermediates in the photosensitized reactions.
使用模拟阳光和单色辐射(365nm)研究了天然有机物(NOM)对富勒烯(即 C60 和富勒醇)光反应动力学的影响。来自多个来源的 NOM 猝灭(减缓)了水中 C60 聚集体的光反应(aqu/nC60),但敏化(加速)了富勒醇的光反应。动力学研究表明,猝灭是通过一种静态机制发生的,涉及吸附在 aqu/nC60 表面上的 NOM 分子。aqu/nC60 光反应的猝灭常数与与 NOM 的芳香性和分子大小相关的光学参数大致相关。通过研究在不同 NaCl 强度下 pH 为 7 时存在和不存在 NOM 时胶体 C60 的聚集动力学,间接研究了 aqu/nC60 颗粒与 NOM 的缔合。与 aqu/nC60 不同,亲水性富勒烯富勒醇的光反应效率随 NOM 浓度的增加呈线性增加,敏化光反应的动力学参数随 NOM 的光谱斜率系数和 254nm 至 365nm 吸收系数之比(E2:E3)的增加而增加。结果表明,NOM 的三重态激发态是光敏反应中的关键中间体。