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首页> 外文期刊>Zeitschrift fur Anorganische und Allgemeine Chemie >Soluble monometallic salen complexes derived from O-functionalized salicylaldehydes as metalloligands for the synthesis of heterobimetallic complexes
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Soluble monometallic salen complexes derived from O-functionalized salicylaldehydes as metalloligands for the synthesis of heterobimetallic complexes

机译:衍生自O-官能化水杨醛作为金属配体的可溶性单金属塞伦配合物,用于合成异双金属配合物

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摘要

The reaction of 2,3-diamino-2,3-dimethylbutane (tmen) with 3-hydroxysalicylaldehyde (3hsal), 4-hydroxysalicylaldehyde (4hsal), and 5-hydroxysalicylaldchyde (5hsal) or 3-carboxysalicylaldehyde (3csal) gave the hydroxy-functionalized salen ligands H(4)3hsaltmen, H(4)4hsaltmen and H(4)5hsaltmen, or the 3-carboxyfunctionalized ligand H(4)3csaltmen, which were characterized by H-1, (CI)-C-13{H-1} NMR and IR spectroscopy. The nickel(II) and copper(II) complexes [Ni(H(2)3hsaltmen)], [Ni(H(2)4hsaltmen)], [Ni(H(2)5hsaltmen)], [Cu(H(2)3hsaltmen)] and [Cu(H(2)4hsaltmen)] were synthesized in high yield (78-99%) starting from H(4)3hsaltmen, H(4)4hsaltmen and H(4)5hsaltmen and the corresponding metal(II) acetates. The complexes are soluble in acetone, ethanol, methanol, thf and dmso. The reaction of H(4)3csaltmen and nickel(IT) acetate gave [Ni(H(2)3esaltmen)] in 40% yield. The disodium salt of the corresponding copper(II) complex [Cu(Na(2)3csaltmen)] was obtained in 66% yield in a template reaction from 3-carboxysalicylaldeliyde, tmen, copper(II) acetate and sodium hydroxide, and was characterized by EPR spectroscopy and mass spectrometry. All complexes were identified by IR spectroscopy and elemental analysis, the nickel complexes also by NMR spectroscopy, and [Ni(H(2)3hsaltmen)], [Ni(H(2)4hsaltmen)] and [Ni(H(2)3esaltmen)] by X-ray crystallography. The homobinuclear copper complex [Cu-2(3hsaltmen)] was prepared in 91% yield from H(4)3hsaltmen, two equivalents of Cu(CH3COO)(2)center dot H2O and four equivalents of LiOH-H2O and was characterized by IR spectroscopy, elemental analysis and mass spectrometry. The trinuclear complex [Zr Ni(3hsaltmen)(2)] was obtained from [Zr(NEt2)(4)] and [Ni(H(2)3hsaltmen)] (ratio 1:2) and characterized by FAB and APPI mass spectrometry and X-ray crystallography. The redox potential of the trinuclear complex [Zr{Ni(3hsaltmen)(2)}] is shifted by 0.04 V to positive potential compared to [Ni(H(2)3hsaltmen)], while the redox potential of the binuclear copper complex [Cu-2(3hsaltmen)] is shifted by 0.22 V to negative potential compared to [Cu(H(2)3hsaltmen)].
机译:2,3-二氨基-2,3-二甲基丁烷(tmen)与3-羟基水杨醛(3hsal),4-羟基水杨醛(4hsal)和5-羟基水杨醛(5hsal)或3-羧基水杨醛(3csal)的反应得到羟基-功能化的salen配体H(4)3haltmen,H(4)4hsaltmen和H(4)5hsaltmen或3-羧基官能化的配体H(4)3csaltmen,其特征在于H-1,(CI)-C-13 {H -1} NMR和IR光谱。镍(II)和铜(II)配合物[Ni(H(2)3hsaltmen)],[Ni(H(2)4hsaltmen)],[Ni(H(2)5hsaltmen)],[Cu(H(2 )3hsaltmen)和[Cu(H(2)4hsaltmen)]以高产率(78-99%)从H(4)3hsaltmen,H(4)4hsaltmen和H(4)5hsaltmen以及相应的金属( II)乙酸盐。该络合物可溶于丙酮,乙醇,甲醇,四氢呋喃和二甲基硅氧烷。 H(4)3盐与乙酸镍(IT)的反应以40%的收率得到[Ni(H(2)3esaltmen)]。由3-羧基水杨醛醛,tmen,乙酸铜(II)和氢氧化钠在模板反应中以66%的产率获得相应的铜(II)配合物[Cu(Na(2)3csaltmen)]的二钠盐,并对其进行了表征通过EPR光谱和质谱分析。所有配合物均通过红外光谱和元素分析鉴定,镍配合物也通过NMR光谱鉴定,[Ni(H(2)3hsaltmen)],[Ni(H(2)4hsaltmen)]和[Ni(H(2)3esaltmen) )]的X射线晶体学分析。由H(4)3hsaltmen,2当量的Cu(CH3COO)(2)中心点H2O和4当量的LiOH-H2O以91%的产率制备同核双铜络合物[Cu-2(3hsaltmen)]。光谱,元素分析和质谱。从[Zr(NEt2)(4)]和[Ni(H(2)3hsaltmen)](比例为1:2)获得三核配合物[Zr Ni(3hsaltmen)(2)],并通过FAB和APPI质谱进行表征和X射线晶体学。与[Ni(H(2)3hsaltmen)]相比,三核配合物[Zr {Ni(3hsaltmen)(2)}]的氧化还原电势偏移0.04 V至正电势,而双核铜配合物[与[Cu(H(2)3hsaltmen)]相比,Cu-2(3hsaltmen)]移动了0.22 V到负电位。

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