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阳离子染料分子在胶体中的聚苯乙烯微球上的吸附:通过二次谐波产生探测表面电荷和组成的影响

Adsorption of a cationic dye molecule on polystyrene microspheres in colloids: effect of surface charge and composition probed by second harmonic generation.

作者信息

Eckenrode Heather M, Jen Shih-Hui, Han Jun, Yeh An-Gong, Dai Hai-Lung

机构信息

Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.

出版信息

J Phys Chem B. 2005 Mar 17;109(10):4646-53. doi: 10.1021/jp045610q.

Abstract

Nonlinear optical probe, second harmonic generation (SHG), of the adsorption of the dye molecule malachite green (MG), in cationic form at pH < or = 5, on polystyrene microspheres in aqueous solution is used to study the effect of surface charge and composition on molecular adsorption. Three types of polystyrene microspheres with different surface composition are investigated: (1) a sulfate terminated, anionic surface, (2) a neutral surface without any functional group termination, and (3) an amine terminated, cationic surface. The cationic dye was found to adsorb at all three surfaces, regardless of surface charge. The adsorption free energies, DeltaG's, measured for the three surfaces are -12.67, -12.39, and -10.46 kcal/mol, respectively, with the trend as expected from the charge interactions. The adsorption density on the anionic surface, where attractive charge-charge interaction dominates, is determined by the surface negative charge density. The adsorption densities on the neutral and cationic surfaces are on the other hand higher, perhaps as a result of a balance between minimizing repulsive charge interaction and maximizing attractive molecule-substrate and intermolecular interactions. The relative strength of the SH intensity per molecule, in combination of a model calculation, reveals that the C(2) axis of the MG molecule is nearly perpendicular to the surface on the anionic surface and tilts away from the surface norm when the surface is neutral and further away when cationic. Changing the pH of the solution may alter the surface charge and subsequently affect the adsorption configuration and SH intensity.

摘要

采用非线性光学探针——二次谐波产生(SHG)技术,研究了阳离子形式的染料分子孔雀石绿(MG)在pH≤5的水溶液中于聚苯乙烯微球上的吸附情况,以考察表面电荷和组成对分子吸附的影响。研究了三种具有不同表面组成的聚苯乙烯微球:(1)硫酸根封端的阴离子表面;(2)无任何官能团封端的中性表面;(3)胺封端的阳离子表面。结果发现,无论表面电荷如何,阳离子染料均可吸附在所有三种表面上。对这三种表面测得的吸附自由能ΔG分别为-12.67、-12.39和-10.46 kcal/mol,其趋势符合电荷相互作用的预期。在以电荷吸引相互作用为主导的阴离子表面上,吸附密度由表面负电荷密度决定。另一方面,中性和阳离子表面上的吸附密度更高,这可能是由于在最小化排斥电荷相互作用与最大化吸引分子-底物和分子间相互作用之间达到了平衡。结合模型计算,每个分子的SH强度的相对强度表明,MG分子的C(2)轴在阴离子表面上几乎垂直于表面,在表面为中性时倾斜远离表面法线,在表面为阳离子时倾斜得更远。改变溶液的pH值可能会改变表面电荷,进而影响吸附构型和SH强度。

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