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Preparation of Thermoresponsive Cationic Copolymer Brush Surfaces and Application of the Surface to Separation of Biomolecules

机译:热响应性阳离子共聚物刷表面的制备及其在生物分子分离中的应用

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We have prepared poly(iV-isopropylacrylamide (IPAAm)-co-2-(dimethylamino)ethylmethacrylate (DMAEMA)) brush-grafted silica bead surfaces through surface-initiated atom transfer radical polymerization (ATRP) using the CuCl/CuCl2/Me6TREN catalytic system in 2-propanol at 25 °C for 16 h.The prepared temperature-responsive surfaces were characterized by chromatographic analysis using the modified silica beads as stationary phases.Chromatographic retention times for adenosine nucleotides in aqueous mobile phases were significantly increased compared to that previously reported for other cationic hydrogel surfaces,indicating that strong electrostatic cationic copolymer brush interactions occur between the surfaces and nucleotide analytes.Retention times for adenosine nucleotides significantly decreased with increasing column temperature,explained by the decreasing basicity in the copolymer with increasing temperature.Step-temperature gradients from 10 to 50 °C shorten ATP retention times.These results indicate that cationic copolymer brash surfaces prepared by ATRP can rapidly alter their electrostatic properties by changing aqueous temperature.
机译:我们已经使用CuCl / CuCl2 / Me6TREN催化体系通过表面引发的原子转移自由基聚合(ATRP)制备了聚(n-异丙基丙烯酰胺(IPAAm)-co-2-(二甲基氨基)乙基甲基丙烯酸酯(DMAEMA))刷接的二氧化硅珠表面在25°C下于2-丙醇中放置16 h。制备的温度响应表面通过使用改性硅胶珠作为固定相的色谱分析进行表征。与以前报道的相比,在水流动相中腺苷核苷酸的色谱保留时间显着增加对于其他阳离子水凝胶表面,表明表面与核苷酸分析物之间发生强静电阳离子共聚物刷相互作用。腺苷核苷酸的保留时间随着柱温的升高而显着减少,这可以解释为随着温度升高,共聚物中的碱度降低。从10到50°C可以缩短ATP保留时间。结果表明,由ATRP制备的阳离子共聚物钎焊表面可通过改变水温快速改变其静电性能。

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