Parida Sudam K, Dash Sukalyan, Patel Sabita, Mishra B K
Centre of Studies in Surface Science and Technology, Department of Chemistry, Jyoti Vihar, 768 019, Orissa, India.
Adv Colloid Interface Sci. 2006 Sep 13;121(1-3):77-110. doi: 10.1016/j.cis.2006.05.028. Epub 2006 Jul 31.
The adsorption behaviour of various organic adsorbates on silica surface is reviewed. Most of the structural information on silica is obtained from IR spectral data and from the characteristics of water present at the silica surface. Silica surface is generally embedded with hydroxy groups and ethereal linkages, and hence considered to have a negative charged surface prone to adsorption of electron deficient species. Adsorption isotherms of the adsorbates delineate the nature of binding of the adsorbate with silica. Aromatic compounds are found to involve the pi-cloud in hydrogen bonding with silanol OH group during adsorption. Cationic and nonionic surfactants adsorb on silica surface involving hydrogen bonding. Sometimes, a polar part of the surfactants also contributes to the adsorption process. Styryl pyridinium dyes are found to anchor on silica surface in flat-on position. On modification of the silica by treating with alkali, the adsorption behaviour of cationic surfactant or polyethylene glycol changes due to change in the characteristics of silica or modified silica surface. In case of PEG-modified silica, adsolubilization of the adsorbate is observed. By using a modified adsorption equation, hemimicellization is proposed for these dyes. Adsorptions of some natural macromolecules like proteins and nucleic acids are investigated to study the hydrophobic and hydrophilic binding sites of silica. Artificial macromolecules like synthetic polymers are found to be adsorbed on silica surface due to the interaction of the multifunctional groups of the polymers with silanols. Preferential adsorption of polar adsorbates is observed in case of adsorbate mixtures. When surfactant mixtures are considered to study competitive adsorption on silica surface, critical micelle concentration of individual surfactant also contributes to the adsorption isotherm. The structural study of adsorbed surface and the thermodynamics of adsorption are given some importance in this review.
本文综述了各种有机吸附质在二氧化硅表面的吸附行为。关于二氧化硅的大多数结构信息是通过红外光谱数据以及二氧化硅表面存在的水的特性获得的。二氧化硅表面通常嵌入有羟基和醚键,因此被认为具有带负电荷的表面,易于吸附缺电子物种。吸附质的吸附等温线描绘了吸附质与二氧化硅结合的性质。发现芳香族化合物在吸附过程中通过π电子云与硅醇羟基形成氢键。阳离子和非离子表面活性剂通过氢键吸附在二氧化硅表面。有时,表面活性剂的极性部分也有助于吸附过程。发现苯乙烯基吡啶染料以平躺的位置锚定在二氧化硅表面。用碱处理二氧化硅进行改性后,阳离子表面活性剂或聚乙二醇的吸附行为会因二氧化硅或改性二氧化硅表面特性的变化而改变。在聚乙二醇改性的二氧化硅的情况下,观察到吸附质的增溶作用。通过使用修正的吸附方程,提出了这些染料的半胶束化作用。研究了一些天然大分子如蛋白质和核酸的吸附,以研究二氧化硅的疏水和亲水结合位点。发现人工大分子如合成聚合物由于聚合物的多功能基团与硅醇的相互作用而吸附在二氧化硅表面。在吸附质混合物的情况下,观察到极性吸附质的优先吸附。当考虑表面活性剂混合物以研究在二氧化硅表面的竞争吸附时,单个表面活性剂的临界胶束浓度也对吸附等温线有贡献。本文综述中对吸附表面的结构研究和吸附热力学给予了一定的重视。