Department of Environmental Science, Zhejiang University, Hangzhou 310028, China.
Environ Sci Technol. 2010 Jan 15;44(2):681-7. doi: 10.1021/es902173v.
Surfactants are used in synthesis and dispersion of carbon nanotubes (CNTs) and can thus be released into the environment with CNTs. In this study, it was observed that the coupled release of surfactants and CNTs altered the sorption of organic contaminants on the CNTs. The cationic surfactant, cetylpyridinium chloride (CPC), decreased naphthalene sorption on single-walled carbon nanotubes (SWCNT). In the most dramatic example, the adsorption capacity of naphthalene on SWCNT was reduced from 240 to 61.1 mg/g. The decrease of naphthalene sorption could be largely attributed to the competition of adsorbed CPC cations (i.e., C(21)H(38)N(+)) with naphthalene by occupying the SWCNT surface as surfaces decreased from 737 to 88.9 m(2)/g after the coating of CPC. However, the adsorbed CPC may form hemimicelles and result in a favorable media for naphthalene partition to counteract the decrease in naphthalene sorption. Configuration changes of adsorbed CPC hemimicelles might occur because the naphthalene partition into the adsorbed CPC decreased with the increase of adsorbed CPC. A partition-adsorption model was introduced to describe the partition fraction of naphthalene into adsorbed CPC hemimicelles as well as the adsorption fraction of naphthalene on unoccupied surfaces of SWCNT.
表面活性剂用于碳纳米管 (CNT) 的合成和分散,因此可能会与 CNT 一起释放到环境中。在这项研究中,观察到表面活性剂和 CNT 的共同释放改变了有机污染物在 CNT 上的吸附。阳离子表面活性剂十六烷基吡啶氯化物 (CPC) 降低了萘在单壁碳纳米管 (SWCNT) 上的吸附。在最显著的例子中,萘在 SWCNT 上的吸附容量从 240 减少到 61.1mg/g。萘吸附的减少主要归因于吸附的 CPC 阳离子 (即 C(21)H(38)N(+)) 与萘之间的竞争,因为 CPC 涂层后 SWCNT 的表面积从 737 减少到 88.9m(2)/g。然而,吸附的 CPC 可能会形成半胶束,形成有利于萘分配的介质,以抵消萘吸附的减少。吸附的 CPC 半胶束的构象变化可能会发生,因为萘分配到吸附的 CPC 中随着吸附的 CPC 的增加而减少。引入了一个分配-吸附模型来描述萘分配到吸附的 CPC 半胶束中的分配分数以及萘在 SWCNT 未占据表面上的吸附分数。