Brenna O
J Chromatogr. 1977 Apr 11;134(2):279-84. doi: 10.1016/s0021-9673(00)88524-6.
Commercial carrier ampholytes, obtained by coupling polyethylene polyamines to acrylic acid, exhibit a conductivity minimum in the pH range 5.5-6.5 owing to the lack of appropriate pK values of the polyamine in this pH region. By replacing acrylic with itaconic acid, it has been possible to effect substantial improvements in the pH range 5.5-6.5 as itaconic acid has a pK2 value of 5.45. Upon coupling, the pK of the gramma-carboxyl group remains virtually unaltered. With itoconic acid carrier ampholytes it has been possible to improve the conductivity in the pH range 5.5-6.5 by as much as 400% compared with conventional carrier ampholytes. It is suggected that the commercial products should be supplemented with itaconic acid carrier ampholytes in order to obtain a more uniform conductivity and buffering capacity in the pH range 3-10.
通过将聚乙烯多胺与丙烯酸偶联得到的商业载体两性电解质,由于该多胺在pH 5.5 - 6.5范围内缺乏合适的pK值,因而在此pH范围内呈现出最低电导率。通过用衣康酸取代丙烯酸,已能够在pH 5.5 - 6.5范围内实现显著改善,因为衣康酸的pK2值为5.45。偶联后,γ-羧基的pK值基本保持不变。与传统载体两性电解质相比,使用衣康酸载体两性电解质已能够在pH 5.5 - 6.5范围内将电导率提高多达400%。建议商业产品应补充衣康酸载体两性电解质,以便在pH 3 - 10范围内获得更均匀的电导率和缓冲能力。