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ANION-SELECTIVE ELECTRODES BASED ON LONG-CHAIN METHYLTRIALKYLAMMONIUM SALTS

机译:基于长链甲基三烷基铵盐的阴离子选择电极

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A new series of methyltrialkylammonium salts with an alkyl chain length (n) longer than the conventional methyltridodecylammonium (MTDDA, n = 12) has been developed, and these materials were examined for use as the ion-sensing component (ligand) in anion-selective electrodes(ISEs), Syntheses of the higher ammoniums with n = 16, 18, and 20 were carried out. In combination with an alcoholic plasticizer, the ammoniums with n 12, 16, and 18 led to ISEs with fundamental characteristics, such as slope sensitivity, impedance, and time response, that were sufficient for practical applications. Compared with the conventional MTDDA, the ISEs based on the ligands of n = 16 and 18 showed marked improvement in chloride selectivity over both lipophilic and hydrophilic anions, deviating from the Hofmeister regime in some cases. Taking perchlorate as an example, the magnitude of the improvement was a factor of 20 for n = 16 and 15 for n = 18. When the mew ISEs were applied to chloride analysis in blood serum, they improved the accuracy by a factor of 2-6. Therefore, the methyltrialkylammonium salts with alkyl chain lengths of 16 and 18 offer definite advantages over the conventional alternative and are strong candidates to become the standard compounds for use in future chloride ISEs.
机译:已经开发了一系列新的甲基三烷基铵盐,其烷基链长(n)比常规甲基三十二烷基铵盐(MTDDA,n = 12)长,并且已检查了这些材料用作阴离子选择性离子传感组分(配体)电极(ISEs),合成了n = 16、18和20的高级铵。与酒精增塑剂结合使用时,n为12、16和18的铵会导致ISE具有基本特性,例如斜率灵敏度,阻抗和时间响应,足以满足实际应用。与传统的MTDDA相比,基于n = 16和18的配体的ISEs相对于亲脂性和亲水性阴离子均显示出氯离子选择性的显着提高,这在某些情况下与Hofmeister方法不同。以高氯酸盐为例,n = 16时改善幅度为20倍,n = 18时改善幅度为15倍。当将mew ISE用于血清氯化物分析时,其准确度提高了2倍。 6。因此,烷基链长为16和18的甲基三烷基铵盐相对于传统替代品具有明显的优势,并且很有可能成为将来氯化物ISE中使用的标准化合物。

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