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On-chip hydrodynamic chromatography separation and detection of nanoparticles and biomolecules

机译:片上流体动力学色谱法分离和检测纳米颗粒和生物分子

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摘要

For the first time, on-chip planar hydrodynamic chromatography is combined with UV absorption detection. This technique is suitable for size characterization of synthetic polymers, biopolymers, and particles. Possible advantages of an on-chip hydrodynamic chromatography system over conventional techniques, such as size exclusion chromatography, and field-flow fractionation are fast analysis, high efficiency, reduced solvent consumption, and easy temperature control. The hydrodynamic separations are performed in a planar configuration realized in fused silica using a mixture of fluorescent and nonfluorescent polystyrene particles with sizes ranging from 26 to 155 nm. The planar chip configuration consists of a 1-mum-high, 0.5-mm-wide, and 69-mm-long channel, an integrated 150-pL injection structure, and a 30-mum-deep, and 30-mum-wide detection cell, suitable for UV absorption detection. By combination of the separation data obtained in the new fused-silica chip with those obtained using a previously presented planar hydrodynamic chromatography chip, which was realized using silicon and glass microtechnology, a description of the retention and dispersion behavior of planar hydrodynamic chromatography is obtained. Especially the influence of the sidewalls on the dispersion is investigated. Furthermore a hydrodynamic separation within 70 s of several biopolymers is shown in the glass-silicon chip. [References: 37]
机译:首次将片上平面流体动力学色谱与紫外吸收检测相结合。该技术适用于合成聚合物,生物聚合物和颗粒的尺寸表征。片上流体动力色谱系统相对于常规技术(例如尺寸排阻色谱法和场流分馏)的可能优势是分析速度快,效率高,溶剂消耗减少以及易于控制温度。流体动力学分离是在熔融石英中实现的平面构型中进行的,使用尺寸为26至155 nm的荧光和非荧光聚苯乙烯颗粒的混合物。平面芯片配置包括高1微米,宽0.5毫米和长69毫米的通道,集成的150 pL注入结构,深30毫米和宽30毫米的检测器电池,适用于紫外线吸收检测。通过将新的熔融石英芯片中获得的分离数据与使用硅和玻璃微技术实现的使用先前介绍的平面流体动力学色谱芯片获得的分离数据相结合,可以获得对平面流体动力学色谱的保留和分散行为的描述。尤其是研究了侧壁对分散的影响。此外,在玻璃硅芯片中显示了几种生物聚合物在70 s内的流体动力分离。 [参考:37]

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