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Synthesis and characterization of quaternary ammonium dicarboxylic acid isoelectric buffers and their use in pH-biased isoelectric trapping separations

机译:季铵二羧酸等电缓冲液的合成,表征及其在pH偏置的等电阱分离中的应用

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Two approaches are described in this paper for the synthesis of isoelectric buffers that have p/ values in the 1.5 < p/ < 4.3 range. The first synthesis relies on the alkylation of existing aminodicarboxylic acids and recovery of the ampholyte as an inner salt. The second synthesis method forms low-p/ ampholytes by reacting a secondary amine with two equivalents of an alkylester of a haloalkanecarboxylic acid, followed by hydrolysis of the intermediate in an alkaline solution and recovery of the ampholyte as an inner salt. The new ampholytes have been analytically characterized by capillary electrophoresis, high-resolution electrospray ionization-mass spectrometry, one- and two-dimensional nuclear magnetic resonance (NMR) spectroscopy, and X-ray crystallography. The isoionic solutions of the new ampholytes have high buffering capacity and conductivity, making them good pH biasers in the receiving stream in preparative-scale pH-biased isoelectric trapping separations.
机译:本文描述了两种合成等电缓冲液的方法,这些缓冲液的p /值在1.5和LT之间。 p /&LT; 4.3范围。第一合成依赖于现有氨基二羧酸的烷基化和两性电解质作为内盐的回收。第二种合成方法是通过使仲胺与两当量的卤代链烷羧酸的烷基酯反应,然后在碱性溶液中将中间体水解并回收作为内盐的两性电解质来形成低p /两性电解质。新的两性电解质的特征在于毛细管电泳,高分辨率电喷雾电离质谱,一维和二维核磁共振(NMR)光谱以及X射线晶体学。新两性离子的等离子溶液具有很高的缓冲能力和电导率,使其在制备规模的pH偏置的等电阱分离中成为接收物流中的良好pH偏置因子。

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