首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Controlling retention, selectivity and magnitude of EOF by segmented monolithic columns consisting of octadecyl and naphthyl monolithic segments--applications to RP-CEC of both neutral and charged solutes.
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Controlling retention, selectivity and magnitude of EOF by segmented monolithic columns consisting of octadecyl and naphthyl monolithic segments--applications to RP-CEC of both neutral and charged solutes.

机译:通过由十八烷基和萘基整体链段组成的分段整体柱控制EOF的保留,选择性和幅度-中性和带电溶质在RP-CEC中的应用

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Monolithic capillaries made of two adjoining segments each filled with a different monolith were introduced for the control and manipulation of the electroosmotic flow (EOF), retention and selectivity in reversed phase-capillary electrochromatography (RP-CEC). These columns were called segmented monolithic columns (SMCs) where one segment was filled with a naphthyl methacrylate monolith (NMM) to provide hydrophobic and pi-interactions, while the other segment was filled with an octadecyl acrylate monolith (ODM) to provide solely hydrophobic interaction. The ODM segment not only provided hydrophobic interactions but also functioned as the EOF accelerator segment. The average EOF of the SMC increased linearly with increasing the fractional length of the ODM segment. The neutral SMC provided a convenient way for tuning EOF, selectivity and retention in the absence of annoying electrostatic interactions and irreversible solute adsorption. The SMCs allowed the separation of a wide range of neutral solutes including polycyclic aromatic hydrocarbons (PAHs) that are difficult to separate using conventional alkyl-bonded stationary phases. In all cases, the k' of a given solute was a linear function of the fractional length of the ODM or NMM segment in the SMCs, thus facilitating the tailoring of a given SMC to solve a given separation problem. At some ODM fractional length, the fabricated SMC allowed the separation of charged solutes such as peptides and proteins that could not otherwise be achieved on a monolithic column made from NMM as an isotropic stationary phase due to the lower EOF exhibited by this monolith.
机译:引入由两个相邻段组成的整体毛细管,每个段均填充有不同的整体,以控制和操作反相毛细管电色谱(RP-CEC)中的电渗流(EOF),保留和选择性。这些色谱柱称为分段整体式色谱柱(SMCs),其中一个段填充有甲基丙烯酸萘酯整料(NMM)以提供疏水和pi相互作用,而另一段填充有丙烯酸十八烷基酯整料(ODM)仅提供疏水性的相互作用。 。 ODM链段不仅提供疏水相互作用,而且还充当EOF促进剂链段。 SMC的平均EOF随着ODM段长度的增加而线性增加。中性SMC提供了一种方便的方法,可在没有烦人的静电相互作用和不可逆溶质吸附的情况下调节EOF,选择性和保留率。 SMC允许分离多种中性溶质,包括多环芳烃(PAH),这些很难使用常规的烷基键合固定相进行分离。在所有情况下,给定溶质的k'是SMC中ODM或NMM链段的分数长度的线性函数,因此有助于定制给定SMC来解决给定的分离问题。在某些ODM分数长度上,所制造的SMC允许分离带电荷的溶质,例如肽和蛋白质,而由于这种整体显示出的EOF较低,因此在NMM制成的整体柱(作为各向同性固定相)上是无法实现的。

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