Bowdoin College, Department of Chemistry, Brunswick, Maine 04011, United States.
Environ Sci Technol. 2013 Dec 17;47(24):14119-27. doi: 10.1021/es403389a. Epub 2013 Dec 4.
Through the study of substituted anilines and benzylamines, we demonstrated that cooperative cation-π, π-π, and van der Waals interactions can increase aromatic cationic amine sorption to Na/Ca-montmorillonite well beyond the extent expected by cation exchange alone. Cationic amines exhibiting cooperative interactions displayed nonlinear S-shaped isotherms and increased affinity for the sorbent at low surface coverage; parallel cation exchange and cooperative interactions were noted above a sorption threshold of 0.3-2.3% of exchange sites occupied. Our experiments revealed the predominance of intermolecular cation-π interactions, which occurred between the π system of a compound retained on the surface via cation exchange and the cationic amine group of an adjacent molecule. Compounds with greater amine charge/area and electron-donating substituents that allowed for greater electron density at the center of the aromatic ring showed a greater potential for cation-π interactions on montmorillonite surfaces. However, benzylamine sorption to nine soils, at charge loadings comparable to the experiments with montmorillonite, revealed no significant cooperative interactions. It appears that cation-π interactions may be likely in soils with exceptionally high cation exchange capacities (>0.7 mol charge/kg) and low organic matter contents, abundant in montmorillonite and other expanding clay minerals.
通过对取代苯胺和苄胺的研究,我们证明了协同的阳离子-π、π-π 和范德华相互作用可以极大地增加芳香阳离子胺对钠/钙蒙脱石的吸附,远远超出单独阳离子交换的预期程度。表现出协同相互作用的阳离子胺显示出非线性 S 形等温线,并在低表面覆盖度下对吸附剂表现出更高的亲和力;在吸附位占据 0.3-2.3%的吸附阈值以上,观察到平行的阳离子交换和协同相互作用。我们的实验揭示了分子间阳离子-π 相互作用的优势,这种相互作用发生在通过阳离子交换保留在表面上的化合物的π系统和相邻分子的阳离子胺基团之间。具有更大的胺电荷/面积和供电子取代基的化合物,使芳环中心的电子密度更大,在蒙脱石表面上显示出更大的阳离子-π 相互作用潜力。然而,苄胺在Charge 负载与蒙脱石实验相当的九种土壤中的吸附,并未显示出明显的协同相互作用。看来,阳离子-π 相互作用可能在阳离子交换容量极高(>0.7 摩尔电荷/千克)和有机质含量低的土壤中更为常见,这些土壤在蒙脱石和其他膨胀粘土矿物中含量丰富。