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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Adsorption of Pure and Mixed Solvent Solutions of Spin Probes onto Stationary Phases
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Adsorption of Pure and Mixed Solvent Solutions of Spin Probes onto Stationary Phases

机译:旋转探针的纯溶液和混合溶剂溶液吸附到固定相上

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摘要

Water,methanol(MeOH),acetonitrile(ACN),and binary MeOH-water and ACN-water solutions of different spin probes(nitroxides),selected to mimic the behavior of different pollutants,were adsorbed onto stationary phases usually used in reversed-phase high-performance liquid chromatography(RP-HPLC).These stationary phases are constituted by porous silica and differ from each other regarding the surface area,the pore size,the particle size,the surface functions(NH_2,C8,and C18),and the percentage of functionalization.The electron paramagnetic resonance(EPR)spectra of the probe solutions adsorbed into the pores were analyzed by computer-aided computation of the spectral line shape,which provided structural and dynamical parameters of the probes and their environments.These parameters provided information on the surface properties of the stationary phases,such as alkyl chain density,solvent penetration,stationary-phase ordering,and residual silanol effects,which modify the retention times in HPLC.A different availability of polar surface groups in the pure and mixed solvents was found for the different stationary phases depending on(1)the different functionalization degree,(2)the surface-chain length,(3)the particle size,and(4)the polarity of both the probe and the solvent.The C8 functionalization rendered the surface more hydrophobic with respect to C18.The endcapping process of the residual silanols strongly enhanced the surface hydrophobicity tested by the probes.At the highest water content,the adsorption of the polar or charged probes onto the hydrophobic surface is the lowest and self-aggregation occurs.When the probes bear both hydrophilic and hydrophobic moieties,the adsorption is enhanced by a synergy between hydrophilic and hydrophobic bonds with the surface.A balance between the hydrophilic and hydrophobic forces leads to high adsorption and partial insertion of the surfactant probes in an ordered C18 chain layer at the solid surface which forms in the binary mixtures;this layer is ascertained between 40% and 70% of the less hydrophilic solvent,depending on the type of both the solid and the probe.This insertion and the response on the formation of the ordered layer were favored in ACN-water with respect to MeOH-water.
机译:选择水,甲醇(MeOH),乙腈(ACN)以及不同自旋探针(二氧化氮)的二元MeOH-水溶液和ACN-水溶液,以模拟不同污染物的行为,被吸附到通常用于反相的固定相上这些固定相由多孔二氧化硅组成,在表面积,孔径,粒径,表面功能(NH_2,C8和C18)和通过计算机辅助计算谱线形状分析了探针溶液吸附到孔中的电子顺磁共振(EPR)光谱,提供了探针的结构和动力学参数及其环境。有关固定相表面性质的信息,例如烷基链密度,溶剂渗透,固定相有序化和残留硅烷醇效应,这些均会改变HPL的保留时间根据(1)不同的官能度,(2)表面链长,(3)粒径和(4),发现对于不同的固定相,纯溶剂和混合溶剂中的极性表面基团的CA可用性不同。 C8官能化使表面相对于C18更具疏水性。残留硅烷醇的封端过程极大地增强了探针测试的表面疏水性。在最高含水量下,对C18的吸附极性或带电荷的探针在疏水性表面上的亲和力最低,并且会发生自聚集。当探针同时具有亲水性和疏水性部分时,亲水性和疏水性键与表面之间的协同作用会增强吸附。力导致表面活性剂探针的高吸附力和部分插入在固态表面上形成的二元混合物中的有序C18链层中res;根据固体和探针的类型确定此层的亲水性较低的溶剂在40%至70%之间。相对于ACN-水,这种插入和对有序层形成的响应是有利的到MeOH-水。

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