首页> 外文OA文献 >N,N'-Ethylenebis(pyridoxylideneiminato) and N,N'-Ethylenebis(pyridoxylaminato): Synthesis, Characterization, Potentiometric, Spectroscopic, and DFT Studies of Their Vanadium(IV) and Vanadium(V) Complexes
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N,N'-Ethylenebis(pyridoxylideneiminato) and N,N'-Ethylenebis(pyridoxylaminato): Synthesis, Characterization, Potentiometric, Spectroscopic, and DFT Studies of Their Vanadium(IV) and Vanadium(V) Complexes

机译:N,N'-乙撑双(吡啶氧基亚胺基)和N,N'-乙撑双(吡啶氧基亚胺基):钒(IV)和钒(V)配合物的合成,表征,电势,光谱和DFT研究

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摘要

The Schiff base N,Nprime-ethylenebis(pyridoxylideneiminato) (H2pyr2en, 1) was synthesized by reaction of pyridoxal with ethylenediamine; reduction of H2pyr2en with NaBH4 yielded the reduced Schiff base N,Nprime-ethylenebis(pyridoxylaminato) (H2Rpyr2en, 2); their crystal structures were determined by X-ray diffraction. The totally protonated forms of 1 and 2 correspond to H6L4+, and all protonation constants were determined by pH-potentiometric and 1H NMR titrations. Several vanadium(IV) and vanadium(V) complexes of these and other related ligands were prepared and characterized in solution and in the solid state. The X-ray crystal structure of [VVO2(HRpyr2en)] shows the metal in a distorted octahedral geometry, with the ligand coordinated through the N-amine and O-phenolato moieties, with one of the pyridine-N atoms protonated. Crystals of [(VVO2)2(pyren)2]sdot2 H2O were obtained from solutions containing H2pyr2en and oxovanadium(IV), where Hpyren is the ldquohalfrdquo Schiff base of pyridoxal and ethylenediamine. The complexation of VIVO2+ and VVO2+ with H2pyr2en, H2Rpyr2en and pyridoxamine in aqueous solution were studied by pH-potentiometry, UV/Vis absorption spectrophotometry, as well as by EPR spectroscopy for the VIVO systems and 1H and 51V NMR spectroscopy for the VVO2 systems. Very significant differences in the metal-binding abilities of the ligands were found. Both 1 and 2 act as tetradentate ligands. H2Rpyr2en is stable to hydrolysis and several isomers form in solution, namely cis-trans type complexes with VIVO, and alpha-cis- and beta-cis-type complexes with VVO2. The pyridinium-N atoms of the pyridoxal rings do not take part in the coordination but are involved in acid-base reactions that affect the number, type, and relative amount of the isomers of the VIVO-H2Rpyr2en and VVO2-H2Rpyr2en complexes present in solution. DFT calculations were carried out and support the formation and identification of the isomers detected by EPR or NMR spectroscopy, and the strong equatorial and axial binding of the O-phenolato in VIVO and VVO2 complexes. Moreover, the DFT calculations done for the [VIVO(H2Rpyr2en)] system indicate that for almost all complexes the presence of a sixth equatorial or axial H2O ligand leads to much more stable compounds.
机译:通过吡ido醛与乙二胺的反应合成席夫碱N,N-伯氨撑-乙撑双(吡啶氧基亚胺基)(H2pyr2en,1);用NaBH4还原H2pyr2en得到还原的席夫碱N,Nprime-亚乙基双(吡啶氧基laminato)(H2Rpyr2en,2);它们的晶体结构通过X射线衍射确定。 1和2的总质子化形式对应于H6L4 +,所有质子化常数均通过pH电位滴定法和1H NMR滴定法测定。制备了这些和其他相关配体的几种钒(IV)和钒(V)配合物,并在溶液中和固态下进行了表征。 [VVO2(HRpyr2en)]的X射线晶体结构显示该金属呈扭曲的八面体几何形状,其配体通过N-胺和O-苯酚基部分进行配位,其中一个吡啶N原子被质子化。从含有H2pyr2en和氧钒(IV)的溶液中获得[[(VVO2)2(pyren)2] sdot2·H2O的晶体,其中Hpyren是吡ido醛和乙二胺的ldquohalfrdquo Schiff碱。通过pH电位法,UV / Vis吸收分光光度法以及VIVO系统的EPR光谱和VVO2系统的1H和51V NMR光谱研究了VIVO2 +和VVO2 +与H2pyr2en,H2Rpyr2en和吡ido胺在水溶液中的络合。发现配体的金属结合能力有非常显着的差异。 1和2均充当四齿配体。 H2Rpyr2en对水解稳定,并且在溶液中形成多种异构体,即与VIVO的顺式反式复合物,与VVO2的α-顺式和β-顺式复合物。吡ido醛环的吡啶鎓-N原子不参与配位,但参与酸碱反应,影响溶液中存在的VIVO-H2Rpyr2en和VVO2-H2Rpyr2en配合物的异构体的数量,类型和相对量。进行了DFT计算,并支持通过EPR或NMR光谱法检测到的异构体的形成和鉴定,以及O-酚基在VIVO和VVO2络合物中的强赤道和轴向结合。此外,对[VIVO(H2Rpyr2en)]系统进行的DFT计算表明,对于几乎所有配合物,第六个赤道或轴向H2O配体的存在都会导致化合物更加稳定。

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