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Radical-scavenging Ability of Hydrophilic Carbon Nanoparticles: From Fullerene to Its Soot

机译:亲水碳纳米粒子的自由基清除能力:从富勒烯到其烟灰

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摘要

We have recently developed a facile synthetic method for highly water-soluble fullerene, so-called fullerenol, for the treatment of fullerene with hydrogen peroxide. This method was applied to fullerene soot to yield the corresponding new hydrophilic carbon materials, and the obtained products were subjected to infrared spectroscopy and elemental analysis. The DLS particle size analysis demonstrated the relatively high dispersion of hydrophilic fullerene soot with a diameter of ~70 nm in water, while the hydrophilic activated carbon obtained by the same treatment showed the larger aggregation with diameters of 200 and 970 nm. The surface analysis using FE-SEM showed the difference in morphology between fullerene soot and activated carbon as well as between before and after hydrophilic treatment of the soot with hydrogen peroxide. Moreover, this hydrophilic fullerene soot exhibited high antioxidant activity (%AOA) up to 87% compared with fullerenol C_(60)(OH)_(36) (54%) and C_(60) (50%) evaluated by β-carotene bleaching method.
机译:我们最近开发了一种简便的合成方法,用于高度水溶性的富勒烯,即所谓的富勒烯醇,用于用过氧化氢处理富勒烯。将该方法应用于富勒烯烟灰,得到相应的新型亲水碳材料,并对所得产物进行红外光谱和元素分析。 DLS粒度分析表明,直径约70 nm的亲水性富勒烯烟灰在水中的分散度较高,而通过相同处理获得的亲水性活性炭则显示出较大的聚集度,直径分别为200和970 nm。使用FE-SEM进行的表面分析显示了富勒烯烟灰和活性炭之间以及在用过氧化氢对烟灰进行亲水处理之前和之后的形态差异。此外,与通过β-胡萝卜素评估的富勒烯醇C_(60)(OH)_(36)(54%)和C_(60)(50%)相比,该亲水性富勒烯烟灰表现出高达87%的高抗氧化活性(%AOA)漂白法。

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