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Control of electroosmotic flow and wall interactions in capillary electrophosesis capillaries by photografted zwitterionic polymer surface layers

机译:通过光接枝两性离子聚合物表面层控制毛细管电渗毛细管中的电渗流和壁相互作用

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A novel capillary with covalently bonded zwitterionic surface modification was prepared by photograft polymerization of the zwitterionic monomer N, N-dimethyl-N-methacryloxyethyl-N-(3-sulfopropyl)ammonium betaine, onto the inner surface of a UV-transparent fused-silica capillary. Although the zwittexionic moieties in the resulting polymeric "tentacles" comprise both a positive quaternary ammonium group and a negative sulfonate group, the coating has a net zero charge. The electroosmotic flow (EOF) was therefore extensively suppressed on the grafted capillary compared to the native silica capillary and to the silica capillary that had been activated for graft polymerization by reaction with 3-(methacryloyl)oxypropyltri-methoxysilane. It was also found that the EOF can be varied by adding chaotropic anions or divalent cations such as perchlorate ion and magnesium ion to the running buffer, due to the interaction between these ions and zwitterionic functional group. This provides a new way of altering the EOF and the wall interaction without changing the pH or the overall ionic strength of the separation buffer. The influence of pH and ionic strength of separation buffer on the EOF were also investigated to optimize the separation conditions. Good separations of a mixture containing eight inorganic anions were achieved within 5 min under optimal conditions by capillary zone electrophoresis. The newly prepared capillary was also well suited for the separation of peptides or proteins. [References: 32]
机译:通过将两性离子单体N,N-二甲基-N-甲基丙烯酰氧基乙基-N-(3-磺丙基)甜菜碱的光接枝聚合到紫外线透明熔融石英的内表面上,制备了具有共价键两性离子表面改性的新型毛细管毛细管。尽管所得聚合物“触角”中的两性离子部分既包含正季铵基团又包含负磺酸盐基团,但是该涂层具有净零电荷。因此,与天然二氧化硅毛细管和已经通过与3-(甲基丙烯酰基)氧丙基三甲氧基硅烷反应而被活化用于接枝聚合的二氧化硅毛细管相比,在接枝毛细管上的电渗流(EOF)被广泛抑制。还发现,由于这些离子与两性离子官能团之间的相互作用,可以通过向运行缓冲液中添加离液阴离子或二价阳离子(如高氯酸根离子和镁离子)来改变EOF。这提供了一种在不改变分离缓冲液的pH值或总离子强度的情况下改变EOF和壁相互作用的新方法。还研究了pH和分离缓冲液的离子强度对EOF的影响,以优化分离条件。在最佳条件下,通过毛细管区带电泳,可以在5分钟内很好地分离出包含8种无机阴离子的混合物。新制备的毛细管也非常适合分离肽或蛋白质。 [参考:32]

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