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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Structural characterization and formation mechanism of sitting-atop (SAT) complexes of 5,10,15,20-tetraphenylporphyrin with divalent metal ions. Structure of the Cu(II)-SAT complex as determined by fluorescent extended x-ray absorption fine structure
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Structural characterization and formation mechanism of sitting-atop (SAT) complexes of 5,10,15,20-tetraphenylporphyrin with divalent metal ions. Structure of the Cu(II)-SAT complex as determined by fluorescent extended x-ray absorption fine structure

机译:5,10,15,20-四苯基卟啉与二价金属离子的坐在位(SAT)配合物的结构表征和形成机理。通过荧光扩展X射线吸收精细结构确定的Cu(II)-SAT络合物的结构

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The UV-vis absorption spectra and the formation kinetics of sitting-atop (SAT) complexes (M(H(2)tpp)(2+)) of 5,10,15,20-tetraphenylporphyrin (H(2)tpp) with a series of divalent metal ions (M2+ = Mn2+, Fe2+, Co2+, Ni2+ Cu2+, and Zn2+) in acetonitrile have been investigated. The structural characteristics of the SAT complexes for a series of M2+ ions are discussed on the basis of the UV-vis absorption spectra. The structure parameters around Cu2+ in the Cu(II)-SAT complex were determined by a fluorescent EXAFS method: the coordination number is 6 with three kinds of Cu-N interactions having bond lengths of 2.05, 1.98, and 2.32 Angstrom for pyrrolenine nitrogens of H(2)tpp, acetonitrile nitrogens at equatorial sites, and acetonitrile nitrogens at axial sites, respectively. The rate constants at 25 degreesC for the formation of the SAT complex in acetonitrile are as follows: k(f)/mol(-1) kg s(-1) = 3.4 x 10(2) for Mn2+, 0.18 for Co2+,1.6 X 10(-3) for Ni2+, and 61 for Zn2+. The finding;that the variation trends in the;ate constants for a series of M2+ ions for the SAT complex formation and the solvent exchange reaction in various solvents are very similar indicates that the-rate-determining step for the SAT complex formation is the interchange between the coordinating nitrogen of a bound acetonitrile and the pyrrolenine nitrogen of H(2)tpp. The fact that the values of kr are smaller by 4-6,orders of magnitude in comparison with those of the solvent exchange suggests that there is a large energetic loss due to the fast preeqdilibria prior-to the rate-determining step,such as deformation of a porphyrin ring rind outer-sphere encounter formation due to an electrostatic interaction between M2+ and the local negative charge on the pyrrolenine nitrogens. We observed the subsequent formation of the corresponding metalloporphyrins by deprotonation of the SAT complex and oxidation of the M2+ center, of which the dynamic behavior was significantly different for the different M2+ ions. [References: 74]
机译:5,10,15,20-四苯基卟啉(H(2)tpp)与坐在顶部(SAT)配合物(M(H(2)tpp)(2+))的UV-vis吸收光谱和形成动力学研究了乙腈中的一系列二价金属离子(M2 + = Mn2 +,Fe2 +,Co2 +,Ni2 + Cu2 +和Zn2 +)。基于紫外可见吸收光谱,讨论了一系列M2 +离子的SAT配合物的结构特征。通过荧光EXAFS方法确定Cu(II)-SAT络合物中Cu2 +周围的结构参数:配位为6,具有3种Cu-N相互作用,键长分别为2.05、1.98和2.32埃H(2)tpp,位于赤道位置的乙腈氮和位于轴向位置的乙腈氮。在25摄氏度下乙腈中SAT配合物形成的速率常数如下:Mn2 +为k(f)/ mol(-1)kg s(-1)= 3.4 x 10(2),Co2 +为0.18,1.6 Ni 2+为X 10(-3),Zn2 +为61。一系列的M2 +离子形成SAT络合物的速率常数变化趋势以及各种溶剂中的溶剂交换反应的发现非常相似,这表明SAT络合物形成的速率确定步骤是交换结合乙腈的配位氮与H(2)tpp的吡咯烷氮之间kr值比溶剂交换的kr值小4-6个数量级的事实表明,在速率确定步骤之前,由于快速的预平衡,例如变形,能量损失很大。由于M2 +与吡咯烷氮上的局部负电荷之间存在静电相互作用,因此形成卟啉环皮的外球面。我们观察到随后通过SAT络合物的去质子化和M2 +中心的氧化形成了相应的金属卟啉,其中不同的M2 +离子的动力学行为明显不同。 [参考:74]

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