首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >SELF-CONSISTENT FRAMEWORK FOR STANDARDISING MOBILITIES IN FREE SOLUTION CAPILLARY ELECTROPHORESIS - APPLICATIONS TO OLIGOGLYCINES AND OLIGOALANINES
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SELF-CONSISTENT FRAMEWORK FOR STANDARDISING MOBILITIES IN FREE SOLUTION CAPILLARY ELECTROPHORESIS - APPLICATIONS TO OLIGOGLYCINES AND OLIGOALANINES

机译:自洽框架在自由溶液毛细管电泳中标准化移动性的应用-在寡聚乙二醇和寡聚丙氨酸中的应用

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摘要

A theoretical analysis of deviations from ideality in ionic transport is presented to correct mobilities, mu, measured in free solution capillary electrophoresis (CE) to mobility at infinite dilution, mu degrees (limiting mobility). Non-ideality is treated at the same level of approximation as in equilibrium, using a correction factor for the sum of the analyte and counter-ion radius originally suggested by Robinson and Stokes (Electrolyte Solutions, 1961). Unlike previous corrections using Debye-Huckel-Onsager theory, which are strictly applicable only at very low ionic strengths, this treatment is expected to be valid for univalent ions migrating in a uni-univalent background electrolyte for ionic strengths up to 0.075 mol kg(-1), a range typical of CE experiments. The analysis is applied to the determination of mu degrees in acidic and basic buffers for oligoalanines and oligoglycines with degree of polymerisation 2 to 6. Limiting mobilities for the fully protonated and deprotonated peptides are found to be numerically equal but opposite in sign, consistent with a change in charge from +1 to -1. In all uni-univalent buffers studied (berate, citrate, low pH lithium phosphate and sodium phosphate) mu degrees values established using data over a range of pH and ionic strength are found to be identical and in excellent agreement with previous values from isotachophoresis. Values of mu degrees in high pH sodium phosphate buffer are systematically 0.2 . 10(-8) m(2) V-1 s(-1) higher than those in other buffers; this may be attributed to limitations of the model for a buffer with 1+:2- and 1+:3- ions. This self-consistent framework for standardising mobilities in free solution CE is expected to be widely applicable to univalent analytes migrating in a 1:1 background electrolyte.
机译:提出了对离子迁移理想状态偏离的理论分析,以将在自由溶液毛细管电泳(CE)中测得的迁移率mu校正为无限稀释时迁移率mu度(极限迁移率)。非理想性的处理与平衡中的近似性相同,使用校正因子对分析物和反离子半径之和进行校正,该校正因子最初由Robinson和Stokes建议(电解质溶液,1961年)。不同于以前使用Debye-Huckel-Onsager理论进行的校正(仅在非常低的离子强度下严格适用),该处理方法有望对离子强度高达0.075 mol kg(-)的单价离子在单价背景电解质中迁移有效。 1),CE实验的典型范围。该分析适用于测定聚合度为2到6的低聚丙氨酸和低聚甘氨酸的酸性和碱性缓冲液中的mu度。发现完全质子化和去质子化的肽的极限迁移率在数值上相等,但符号相反,与电荷从+1变为-1。在所有研究的单价缓冲液(高铁酸盐,柠檬酸盐,低pH磷酸锂和磷酸钠)中,发现使用在一定范围的pH和离子强度范围内的数据确定的μ度值是相同的,并且与等速电泳的先前值非常一致。在高pH值的磷酸钠缓冲液中的度度值系统为0.2。比其他缓冲区高10(-8)m(2)V-1 s(-1);这可能归因于该模型对具有1+:2-和1+:3-离子的缓冲液的限制。标准化的自由溶液CE中迁移率的自洽框架有望广泛应用于在1:1背景电解质中迁移的单价分析物。

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