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Aggregation behavior of fullerenes in aqueous solutions: a capillary electrophoresis and asymmetric flow field-flow fractionation study

机译:富勒烯在水溶液中的聚集行为:毛细管电泳和非对称流场-流分馏研究

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摘要

In this work, the electrophoretic behavior of hydrophobic fullerenes [buckminsterfullerene (C-60), C-70, and N-methyl-fulleropyrrolidine (C-60-pyrr)] and water-soluble fullerenes [fullerol (C-60(OH)(24)); polyhydroxy small gap fullerene, hydrated (C-120(OH)(30)); C-60 pyrrolidine tris acid (C-60-pyrr tris acid); and (1,2-methanofullerene C-60)-61-carboxylic acid (C60CHCOOH)] in micellar electrokinetic capillary chromatography (MECC) was evaluated. The aggregation behavior of the water-soluble compounds in MECC at different buffer and sodium dodecyl sulfate (SDS) concentrations and pH values of the background electrolyte (BGE) was studied by monitoring the changes observed in the electrophoretic pattern of the peaks. Broad and distorted peaks that can be attributed to fullerene aggregation were obtained in MECC which became narrower and more symmetric by working at low buffer and SDS concentrations (below the critical micelle concentration, capillary zone electrophoresis (CZE) conditions). For the characterization of the suspected aggregates formed (size and shape), asymmetrical flow field-flow fractionation (AF4) and transmission electron microscopy (TEM) were used. The results showed that the increase in the buffer concentration promoted the aggregation of the particles, while the presence of SDS micelles revealed multiple peaks corresponding to particles of different aggregation degrees. Furthermore, MECC has been applied for the first time for the analysis of C-60 in two different cosmetic products (i.e., anti-aging serum and facial mask).
机译:在这项工作中,疏水性富勒烯[buckminsterfullerene(C-60),C-70和N-甲基-富勒基吡咯烷(C-60-pyrr)]和水溶性富勒烯[富勒醇(C-60(OH))的电泳行为(24));水合多羟基小间隙富勒烯(C-120(OH)(30)); C-60吡咯烷三酸(C-60-吡三酸);在胶束电动毛细管色谱法(MECC)中评估了(1,2,-亚甲基富勒烯C-60)-61-羧酸(C60CHCOOH)。通过监测峰的电泳图谱中的变化,研究了水溶性化合物在MECC中不同缓冲液和十二烷基硫酸钠(SDS)浓度以及背景电解质(BGE)的pH值的聚集行为。在MECC中获得了可归因于富勒烯聚集的宽峰和扭曲峰,该峰通过在低缓冲液和SDS浓度(低于临界胶束浓度,毛细管区带电泳(CZE)条件)下工作而变得更窄且更对称。为了表征所形成的可疑聚集体(大小和形状),使用了不对称流场流分馏(AF4)和透射电子显微镜(TEM)。结果表明,缓冲液浓度的增加促进了颗粒的聚集,而SDS胶束的存在则揭示了对应于不同聚集度的颗粒的多个峰。此外,MECC首次被用于分析两种不同化妆品中的C-60(即抗衰老血清和面膜)。

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