USEPA Office of Research and Development, National Exposure Research Laboratory, Athens, Georgia 30605, USA.
Langmuir. 2010 Jul 20;26(14):11886-93. doi: 10.1021/la101109h.
The underlying mechanisms of fullerene-fullerene, fullerene-water, and fullerene-soil surface interactions in aqueous systems are not well understood. To advance our understanding of these interfacial interactions, the surface properties of Buckminsterfullerene (C60) and quartz surfaces were investigated. From application of the van Oss-Chaudhury-Good model and the Young-Dupre equation, the Lifshitz-van der Waals, acid-base, and the total surface energies of C60 powder and quartz surfaces were calculated from contact angle measurements using the sessile drop technique. C60 powder measurements indicate low to medium energy surfaces of 41.7 mJ/m2 with a dominant Lifshitz-van der Waals component. In aqueous systems, hydrophobic attraction due to the high cohesion of water is the driving force for C60 aggregation. The high free energy of hydration (DeltaG(pw)(total) = -90.5 mJ/m2) indicates the high affinity of C60 particles for water. Hamaker constants of 4.02 x 10(-21) J (A(pwp)) and 2.59 x 10(-21) J (A(pws)) were derived for C60-C60 and C60-quartz interactions in aqueous systems. The results of this study indicate that surface energy is an important physical parameter that should be considered as a basic characterization property of fullerene nanomaterials.
在水相体系中,富勒烯-富勒烯、富勒烯-水和富勒烯-土壤表面相互作用的潜在机制尚未得到很好的理解。为了深入了解这些界面相互作用,本研究考察了富勒烯(C60)和石英表面的表面特性。通过应用 van Oss-Chaudhury-Good 模型和 Young-Dupre 方程,从使用悬滴技术的接触角测量值计算了 C60 粉末和石英表面的 Lifshitz-van der Waals、酸碱和总表面能。C60 粉末的测量结果表明,表面能较低至中等,为 41.7 mJ/m2,其中以 Lifshitz-van der Waals 分量为主导。在水相体系中,由于水的高内聚性导致的疏水性吸引力是 C60 聚集的驱动力。高水合自由能(DeltaG(pw)(total) = -90.5 mJ/m2)表明 C60 颗粒对水具有高亲和力。在水相体系中,C60-C60 和 C60-石英相互作用的 Hamaker 常数分别为 4.02 x 10(-21) J (A(pwp))和 2.59 x 10(-21) J (A(pws))。本研究的结果表明,表面能是一个重要的物理参数,应作为富勒烯纳米材料的基本特性之一进行考虑。