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首页> 外文期刊>Analytica chimica acta >Polarization,steric,and focusing micro-thermal field-flow fractionation principles,theory,instrumentation,and applications in polymers and particles analysis
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Polarization,steric,and focusing micro-thermal field-flow fractionation principles,theory,instrumentation,and applications in polymers and particles analysis

机译:极化,空间和聚焦微热流分离原理,理论,仪器及其在聚合物和颗粒分析中的应用

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摘要

The benefits of the miniaturization of the separation channel for Thermal field-flow fractionation (TFFF) are analyzed theoretically and studied experimentally.It is found that the operational variables influencing the efficiency and resolution of the separation can be optimized and that the concept of a micro-TFFF is meaningful.A miniaturized TFFF channel was proposed and constructed.It has been demonstrated experimentally that micro-TFFF allows one to carry out high-performance separations under carefully chosen experimental conditions.This new technique is highly competitive in comparison with size-exclusion chromatography (SEC) of macromolecules with molar masses up to roughly one million gram per mole.However,the versatility of micro-TFFF is superior to SEC for macromolecules of ultra-high molar masses,as well as colloidal sub-micron,and micron-sized particles of synthetic,natural,or biological origin.The free choice of the carrier liquids without any modification of the separation system affords an advantage to micro-TFFF.The experimental implementation and application to polymer and particle analysis confirmed the potential of micro-TFFF.
机译:从理论上分析和实验研究了分离通道的小型化对热场流分馏(TFFF)的好处,发现可以优化影响分离效率和分离度的操作变量,并提出了微分离的概念-TFFF是有意义的。提出并构建了一个微型TFFF通道。实验证明,微型TFFF可以在精心选择的实验条件下进行高性能分离。摩尔质量高达每摩尔约100万克的大分子色谱(SEC)。但是,对于超高摩尔质量,胶体亚微米和微米级的大分子,micro-TFFF的通用性优于SEC。大小的合成,天然或生物来源的颗粒。载体液体的自由选择,无需任何分离n系统为微型TFFF提供了一个优势。实验实施以及在聚合物和颗粒分析中的应用证实了微型TFFF的潜力。

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