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Perspectives in Hydrophobic Interaction Temperature-Responsive Liquid Chromatography (TRLC)

机译:疏水相互作用温度响应液相色谱 (TRLC) 的前景

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Temperature-responsive liquid chromatography (TRLC) is an emerging green high performance liquid chromatography (HPLC) mode allowing reversed phase-type separations while necessitating only water as the mobile phase. The columns therein are typically packed with silica particles to which stimuli-responsive polymers are anchored. In hydrophobic interaction TRLC, such polymers depict a loss of water solubility when increasing the temperature above a characteristic conversion temperature, causing large changes in retention over quite narrow and mild temperature ranges (similar to 5-55 degrees C). TRLC circumvents the concerns about analyte or column degradation that can occur when implementing high temperatures (>80 degrees C) on conventional reversed-phase columns. It allows for high performance liquid chromatography (HPLC) using only water often spiked with the additives typically used in reversed-phase LC. Therefore, this separation mode allows for greener, cheaper, and isocratic analyses under non-denaturing conditions. The absence of compositional solvent gradients also allows for the exploitation of temperature gradients in combination with refractive index detection. Purely aqueous hydrophobic interaction TRLC is mostly applicable for solutes depicting a 1 < LogP < 5, yet these ranges can be expanded through implementation of combined aqueous or organic mobiles phases, while preserving the temperature-responsive effects. In this first TRLC installment, our recent developments, new possibilities, and current limitations of the use of 1-D TRLC are discussed, while the column performance is described with respect to the fundamentals of HPLC.
机译:温度响应式液相色谱 (TRLC) 是一种新兴的绿色高效液相色谱 (HPLC) 模式,允许反相型分离,同时只需要水作为流动相。其中的色谱柱通常填充有二氧化硅颗粒,刺激响应聚合物锚定在这些颗粒上。在疏水相互作用 TRLC 中,当温度升高到特征转化温度以上时,这种聚合物会表现出水溶性的损失,从而在相当狭窄和温和的温度范围内(类似于 5-55 摄氏度)导致保留性发生较大变化。TRLC 避免了在传统反相色谱柱上使用高温 (>80°C) 时可能发生的分析物或色谱柱降解的担忧。它允许仅使用通常加标反相液相色谱中常用添加剂的水进行高效液相色谱 (HPLC)。因此,这种分离模式允许在非变性条件下进行更环保、更便宜的等度分析。由于没有成分溶剂梯度,因此可以将温度梯度与示差折光检测相结合。纯水性疏水作用 TRLC 主要适用于表征 1 < LogP < 5 的溶质,但这些范围可以通过实施组合水性或有机流动相来扩展,同时保持温度响应效应。在第一期 TRLC 中,讨论了我们最近的发展、新的可能性和当前使用的一维 TRLC 的局限性,同时根据 HPLC 的基本原理描述了色谱柱的性能。

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