首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >CLEAVAGE OF THE NB=O BOND OF OXONIOBIUM(V) PORPHYRINS - SYNTHESIS AND CHARACTERIZATION OF NOVEL NIOBIUM(V) PORPHYRINS WITH TWO DISTINCT CATECHOLS
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CLEAVAGE OF THE NB=O BOND OF OXONIOBIUM(V) PORPHYRINS - SYNTHESIS AND CHARACTERIZATION OF NOVEL NIOBIUM(V) PORPHYRINS WITH TWO DISTINCT CATECHOLS

机译:铌氧杂卟啉的NB = O键的解离-两种不同的邻苯二酚合成和表征新型铌(V)卟啉

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A novel catecholato complex, Nb-V(tpp)(cat)(Hcat), where cat and Heat are two distinct catechol ligands (a bidentate catecholate dianion and a monodentate catecholate monoanion, respectively) and tpp is 5,10,15,20-tetraphenylporphyrin dianion, has been isolated in the reaction of NBV(tpp)(O)(AcO) with catechol, where AcO is an acetato ligand. Its molecular structure has been determined by X-ray crystallography. Crystal data: monoclinic, space group P2(1)/c, Z = 4, a = 14.592(3) Angstrom, b = 23.46(1) Angstrom, c = 14.415(4) Angstrom, beta = 100.95(2)degrees, R = 0.079. The molecular structure was confirmed to have no oxo ligand, and in this respect it is unique among the niobium(V) porphyrins. The bidentate and monodentate ligands are located on the same side of the porphyrin ring. The heptacoordinate niobium atom is bonded to the four gyrrole nitrogen atoms and to three oxygen atoms in the catechols. The niobium atom is displaced by 1.02 Angstrom from the mean plane of the four nitrogen atoms. The structure of the complex in solution and the mechanism of the Nb = O cleavage were investigated by means of H-1-NMR spectroscopy. The bidentate catechol is oriented in C-s symmetry with respect to the porphyrin plane, and the monodentate catechol is located perpendicularly to both the bidentate catechol and the porphyrin plane. Two intermediates with the bidentate catechol were observed after addition of 2 equiv of catechol to Nb(tmp)(O)(AcO) at -30 degrees C, where tmp denotes the 5, 10, 15, 20-tetramesitylporphyrin dianion. These intermediates were determined to be Nb(tmp)(cat)(OH) and Nb(tmp)(cat)(AcO). Thus, the Nb = O bond of Nb(tmp)(O)(AcO) was easily cleaved to create the two intermediates. We propose a unique route to the Nb = O cleavage that involves an intramolecular electron transfer from the catechol ligand coordinated at the first stage through a ligand exchange with AcO. Both protonation and electron transfer to the Nb = O moiety play important roles in the Nb = O cleavage. [References: 43]
机译:一种新型的儿茶酚络合物Nb-V(tpp)(cat)(Hcat),其中cat和Heat是两个不同的邻苯二酚配体(分别为二齿邻苯二酚二价阴离子和单齿邻苯二酚单阴离子),tpp为5,10,15,20 NBV(tpp)(O)(AcO)与儿茶酚(其中AcO是乙酰基配体)的反应中已分离出四苯基卟啉二价阴离子。其分子结构已经通过X射线晶体学确定。晶体数据:单斜晶系,空间群P2(1)/ c,Z = 4,a = 14.592(3)埃,b = 23.46(1)埃,c = 14.415(4)埃,beta = 100.95(2)度, R = 0.079。证实该分子结构没有氧代配体,就此而言,在铌(V)卟啉中是独特的。双齿和单齿配体位于卟啉环的同一侧。七配位铌原子与儿茶酚中的四个吡咯氮原子和三个氧原子键合。铌原子与四个氮原子的平均平面相距1.02埃。通过H-1-NMR光谱研究了溶液中配合物的结构和Nb = O裂解的机理。齿状邻苯二酚相对于卟啉平面呈C-对称,单齿状邻苯二酚垂直于齿状邻苯二酚和卟啉平面。在-30℃下向Nb(tmp)(O)(AcO)中添加2当量的邻苯二酚后,观察到带有二齿邻苯二酚的两个中间体,其中tmp表示5、10、15、20-四甲基卟啉二价阴离子。确定这些中间体为Nb(tmp)(cat)(OH)和Nb(tmp)(cat)(AcO)。因此,Nb(tmp)(O)(AcO)的Nb = O键很容易裂解,形成两个中间体。我们提出了一种Nb = O裂解的独特途径,该途径涉及从邻苯二酚配体的分子内电子转移,该分子在第一阶段通过与AcO进行配体交换而协调。质子化和电子转移至Nb = O部分均在Nb = O裂解中起重要作用。 [参考:43]

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