首页> 外文期刊>Journal of the American Chemical Society >THE HYDROLYSIS OF TRIMETAPHOSPHATE CATALYZED BY LANTHANIDE(III) AMINOPOLYCARBOXYLATE COMPLEXES - COORDINATION, STABILITY, AND REACTIVITY OF INTERMEDIATE COMPLEXES
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THE HYDROLYSIS OF TRIMETAPHOSPHATE CATALYZED BY LANTHANIDE(III) AMINOPOLYCARBOXYLATE COMPLEXES - COORDINATION, STABILITY, AND REACTIVITY OF INTERMEDIATE COMPLEXES

机译:镧系元素(III)-氨基羧酸盐配合物催化的三甲基磷酸盐的水解-配合物,稳定性和反应性

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The hydrolysis of trimetaphosphate (P-3m) is catalyzed dramatically by La(NTA) (NTA: nitrilotriacetate), but less pronounced by La(EDTA) (EDTA: ethylenediaminetetraacetate). Reaction products are tripolyphosphate (PPP), diphosphate (PP), and monophosphate (P). A multinuclear magnetic resonance study shows that there are only marginal differences between La(NTA)(P-3m) and La(EDTA)(P-3m) regarding complex geometry and P-O bond activation of P-3m. The affinity of P-3m is lower for Ln(EDTA) than for Ln(NTA). The catalyzed hydrolysis probably leads to tridentate coordinated PPP, after which ligand rearrangement takes place. Complexation of PPP to Ln(NTA) or Ln(EDTA), as also reflected in the formation constants, caused decoordination of one carboxylate group of NTA and two of EDTA. The gain in free energy, which is larger for Ln(NTA) than for Ln(EDTA), going from complexed P-3m to PPP may be a driving force of the reaction. Another important factor in this respect is the much higher stability of La(NTA)(OH) compared to that of La(EDTA)(OH). This leads to substantially higher concentrations of reactive complex La(L(1))(P-3m)(OH) for L(1) = NTA, from which it is concluded that the hydrolysis of P-3m catalyzed by La(NTA) proceeds via attack of coordinated hydroxide onto coordinated P-3m. The reactions catalyzed by La(EDTA) are probably initiated by both free and coordinated hydroxide. A kinetic model is developed, in which stabilities and rate constants are incorporated, to predict the speciation during the hydrolysis. Because of the fast subsequent hydrolysis of PPP and PP, competition between P-3m and P for complexation to La(III) is the most important factor governing the inhibition observed during the hydrolysis of P-3m at prolonged reaction times. [References: 58]
机译:La(NTA)(NTA:次氮基三乙酸酯)显着催化三偏磷酸酯(P-3m)的水解,但La(EDTA)(EDTA:乙二胺四乙酸酯)的催化作用不明显。反应产物是三聚磷酸盐(PPP),二磷酸盐(PP)和一磷酸盐(P)。多核磁共振研究表明,La(NTA)(P-3m)和La(EDTA)(P-3m)在复杂几何形状和P-3m的P-O键活化方面仅存在边际差异。 P-3m对Ln(EDTA)的亲和力比对Ln(NTA)的亲和力低。催化的水解可能导致三齿配位的PPP,此后发生配体重排。 PPP与Ln(NTA)或Ln(EDTA)的络合也反映在形成常数上,导致NTA的一个羧基和EDTA的两个羧基失配。从复合P-3m变为PPP,Ln(NTA)的自由能增益大于Ln(EDTA)的自由能增益可能是反应的驱动力。在这方面的另一个重要因素是与La(EDTA)(OH)相比,La(NTA)(OH)的稳定性高得多。对于L(1)= NTA,这会导致更高浓度的反应性复合物La(L(1))(P-3m)(OH)的浓度,由此得出结论,La(NTA)催化了P-3m的水解通过配位氢氧化物攻击配位P-3m继续进行。 La(EDTA)催化的反应可能是由游离和配位的氢氧化物引发的。建立了动力学模型,其中结合了稳定性和速率常数,以预测水解过程中的形态。由于随后PPP和PP的快速水解,P-3m和P之间与La(III)络合的竞争是控制P-3m在延长的反应时间水解过程中观察到的抑制作用的最重要因素。 [参考:58]

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