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Alcohol cluster formation on silica surfaces in cyclohexane

机译:在环己烷中的二氧化硅表面形成醇簇

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Adsorption of ethanol onto silica surfaces from ethanol-cyclohexane binary liquids was investigated by a combination of colloidal probe atomic force microscopy and Fourier transform IR spectroscopy using the attenuated total reflection (ATR) mode. An unusually long range attraction was found between the silica surfaces in the presence of ethanol in the concentration range of 0.1-1.4 mol%. At 0.1 mol% ethanol, the attraction appeared at a distance of 35 +- 3 nm and turned into a repulsive force below 3.5 +- 1.5 nm upon compression. The ATR spectra demonstrated that ethanol adsorbed on the surfaces formed hydrogen-bonded clusters even in a low ethanol con- centration range of 0.1-0.5 mol%, where the attractions were especially long-ranged and practically no ethanol cluster formed in the bulk solutions. The spectra also indicated that the cluster formation involved hydrogen-bonding interactions between surface silanol groups and ethanol hydroxyl groups in addition to those between ethanol molecules. We account for the observed long-range attraction by the bridging of opposed adsorption layers of ethanol on the silica surfaces.
机译:结合胶体探针原子力显微镜和傅里叶变换红外光谱使用衰减全反射(ATR)模式研究了乙醇-环己烷二元液体中乙醇在二氧化硅表面的吸附。在浓度范围为0.1-1.4mol%的乙醇存在下,在二氧化硅表面之间发现了异常长距离的吸引力。在0.1mol%的乙醇下,吸引力在35±3nm的距离处出现并且在压缩时变成低于3.5±1.5nm的排斥力。 ATR光谱表明,即使在0.1-0.5 mol%的低乙醇浓度范围内,吸附在表面上的乙醇仍会形成氢键簇,其中吸引力特别长,并且在本体溶液中几乎没有乙醇簇形成。光谱还表明,除了乙醇分子之间的相互作用之外,团簇的形成还涉及表面硅烷醇基和乙醇羟基之间的氢键相互作用。我们通过在二氧化硅表面上桥接相对的乙醇吸附层来解决观察到的远距离吸引。

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