烷基二胺四(亚甲基膦酸)酸的酸碱性质

O. Kozachkova, Nataliya Tsaryk, V. Pekhnyo, V. Trachevskij, Olga Kocharovska, Oleksii Palchyk
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引用次数: 0

摘要

采用ph电位法和31P核磁共振波谱法研究了乙二胺四(亚甲膦酸)(edtmp)、四亚二胺四(亚甲膦酸)(tetdtmp)和五亚二胺四(亚甲膦酸)(pendtmp)酸的酸碱特性。计算和估计的值酸离解常数(pK) edtmp(рК1 < 2,рК2 < 2,рК3 = 3.07,рК4 = 5.17,рК5 = 6.52,рК6 = 7.97,рК7 = 9.65,рК8 = 10.94),tetdtmp(рК1 < 2,рК2 = 4.48,рК3 = 5.34,рК4 = 6.13,рК5 = 6.66,рК6 = 10.08,рК7 ~ 11.4,рpendtmpК8 ~ 11.5)和(рК1 < 2,рК2 = 4.22,рК3 = 5.56,рК4 = 6.16,рК5 = 7.66,рК6 = 10.99,рК7 ~ 11.5,рК8 ~ 11.6)。酸解离常数的值表明,随着edtmp、tetdtmp和pendtmp系列中两个氮原子之间的烃链长度的增加,磷酸基的酸度降低,氨基的碱度增加。根据计算得到的四膦酸阴离子形成常数的值,构建了四膦酸平衡浓度随pH值的分布图,该分布图反映了在一定pH值下,四膦酸的酸碱平衡状态、不同质子化程度阴离子之间的电荷和浓度比。根据31P核磁共振波谱数据,在edtmp的情况下,一个氨基(甲基膦)基的去质子化氧原子与另一个氨基(甲基膦)基的质子化氮原子之间建立了分子内氢键。在pendtmp和tetdtmp的情况下,由于空间位阻的存在,在遥远的氨基(甲基膦)基团之间不可能形成分子间氢键。
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ACID-BASE PROPERTIES OF ALKYLENE­DIAMINETETRA (METHYLENEPHOSPHONIC) ACIDS
The acid-base characteristics of ethylenediaminetetra(methylenephosphonic) (edtmp), tetramethylenediaminetetra(methylenephosphonic) (tetdtmp) and pentamethylenediaminetetra(methylenephosphonic) (pendtmp) acids were investigated by means of pH-potentiometry and 31P NMR spectroscopy. Calculated and estimated values of acid dissociation constants (pK) for edtmp (рК1<2, рК2<2, рК3=3.07, рК4=5.17, рК5=6.52, рК6=7.97, рК7=9.65, рК8=10.94), for tetdtmp (рК1<2, рК2=4.48, рК3=5.34, рК4=6.13, рК5=6.66, рК6=10.08, рК7~11.4, рК8~11.5) and for pendtmp (рК1<2, рК2=4.22, рК3=5.56, рК4=6.16, рК5=7.66, рК6=10.99, рК7~11.5, рК8~11.6) were obtained. The values of the acid dissociation constants indicate a decrease in the acidity of phosphonic groups and an increase in the basicity of amino groups with increasing hydrocarbon chain length between the two nitrogen atoms in the edtmp, tetdtmp, and pendtmpseries. Based on the values of the calculated constants for the formation of anions of tetra­phosphonic acids, diagrams of the distribution of their equilibrium concentrations depending on pH were constructed, which indicate the state of acid-base equilibrium, the charge and the ratio of concentrations between anions with different degrees of protonation at certain pH values. According to the data of 31P NMR spectro­scopy, the formation of intramolecular hydrogen bonds between the deprotonated oxygen atoms of one amino(methylphosphonic) group with protonated nitrogen atom of another amino(methylphosphonic) group was established in the case of edtmp. In the case of pendtmp and tetdtmp, the formation of intermolecular hydrogen bonds between distant amino(me­thyl­phosphonic) groups is impossible due to the presence of steric hindrances.
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