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Colloidal stability of (functionalised) fullerenes in the presence of dissolved organic carbon and electrolytes

机译:在溶解的有机碳和电解质存在下(官能化)富勒烯的胶体稳定性

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摘要

Carbon-based nanoparticles such as fullerenes have been widely applied in personal care products, drug delivery systems, and solar cells. The properties of nanoparticles have been increasingly studied because of their applications and their potential risks to the environment and human health. Many studies have focused on the environmental fate and properties of C60. However, there is limited information available on the environmental properties of functionalised fullerenes. This study focuses on the colloidal stability of two fullerenes (C60 and [6,6]-diphenyl-C62-bis(butyric acid methyl ester)) in water in the presence of dissolved organic carbon (DOC) and different electrolytes (NaCl and CaCl2). Suspended fullerene concentrations were determined with high resolution Orbitrap mass spectrometry. The size was determined by multi-angle light scattering, dynamic light scattering and for the first time by flow cytometry. The suspended concentrations of the fullerenes were stabilised by low concentrations of DOC (2 mg C per L) in the presence of NaCl. However, sedimentation of DOC occurred at low concentrations of CaCl2 (>~2 mM) which caused removal of (functionalised) fullerenes. The results show that (functionalised) fullerenes can be rapidly removed in natural aqueous systems in the presence of low concentrations of DOC and multivalent inorganic electrolytes.
机译:诸如富勒烯的碳基纳米颗粒已被广泛应用于个人护理产品,药物输送系统和太阳能电池中。由于纳米粒子的应用以及对环境和人类健康的潜在风险,因此对其进行了越来越多的研究。许多研究都集中在C60的环境命运和特性上。然而,关于官能化的富勒烯的环境性质的信息有限。这项研究的重点是在存在溶解有机碳(DOC)和不同电解质(NaCl和CaCl2)的情况下,两种富勒烯(C60和[6,6]-二苯基-C62-双(丁酸甲酯))的胶体稳定性)。悬浮富勒烯浓度通过高分辨率Orbitrap质谱仪测定。通过多角度光散射,动态光散射以及首次通过流式细胞术确定大小。在NaCl存在下,通过低浓度的DOC(每L 2 mg C)来稳定富勒烯的悬浮浓度。但是,DOC的沉淀发生在低浓度的CaCl2(>〜2 mM)下,这导致去除了(官能化的)富勒烯。结果表明,在低浓度的DOC和多价无机电解质的存在下,(官能化的)富勒烯可以在天然水性体系中快速去除。

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