首页> 外文期刊>Synthesis and reactivity in inorganic, metal-organic, and nano-metal chemistry >Mononuclear Ru(II) carbonyl complexes containing quadridentate schiff bases as N_2O_2 donors: Synthesis, spectral, catalytic properties, and antibacterial activity
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Mononuclear Ru(II) carbonyl complexes containing quadridentate schiff bases as N_2O_2 donors: Synthesis, spectral, catalytic properties, and antibacterial activity

机译:含有四齿席夫碱作为N_2O_2供体的单核Ru(II)羰基配合物:合成,光谱,催化性能和抗菌活性

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摘要

Reactions of Ru_3(CO)_(12) with novel tetradentate Schiff bases ligands H_2L~(1-5) in benzene under reduced pressure afforded the formation of new Ru(II) complexes of the type [Ru(CO) _2(L~(1-5))] where L = anion of N,N/bis(salicylaldehyde)4,5- dimethyl-1,2-phenylenediamine (saldmophn), N,N/bis(salicylaldehyde)4,5-dichloro- 1,2-phenylenediamine (saldcophn), N,N/bis(salicylaldehyde) 2,3- diaminonaphthalene (saldnap), N,N/bis(o-vanillin)4,5-dimethy-l,2- phenylenediamine (ovaldmophn), and N,N/bis(ovanillin) 4,5-dichloro-1,2- phenylenediamine (ovaldcophn), respectively. All the newly synthesized complexes were investigated using elemental analysis, FT-IR, UV-Vis, mass spectrometry, and magnetic measurements. An octahedral structure has been tentatively proposed for the new complexes. All the new complexes have been found to be efficient catalysts for oxidation of primary and secondary alcohols into corresponding carbonyl compounds in presence of N-methylmorpholine-N-oxide (NMO) as the source of oxygen. In view of the biological activity, the ligands showed moderate bactericidal activities, where upon chelation with ruthenium, the bactericidal activities increased and the results have been compared with some known antibiotics.
机译:Ru_3(CO)_(12)与新型四齿席夫碱配体H_2L〜(1-5)在苯中的反应在减压下可形成[Ru(CO)_2(L〜)类型的新Ru(II)配合物。 (1-5))],其中,L = N,N /双(水杨醛)4,5-二甲基-1,2-苯二胺(缩醛醛)的阴离子,N,N /双(水杨醛)4,5-二氯-1。 ,2-苯二胺(saldcophn),N,N /双(水杨醛)2,3-二氨基萘(saldnap),N,N /双(邻香兰素)4,5-二甲基-1,2-苯二胺(ovaldmophn),分别是N,N /双(香草醛)4,5-二氯-1,2-苯二胺(ovaldcophn)。使用元素分析,FT-IR,UV-Vis,质谱和磁测量研究了所有新合成的配合物。已经为新的配合物初步提出了八面体结构。已经发现所有新的络合物都是在存在N-甲基吗啉-N-氧化物(NMO)作为氧源的情况下将伯醇和仲醇氧化成相应的羰基化合物的有效催化剂。考虑到生物学活性,配体显示出中等的杀菌活性,其中与钌螯合后,杀菌活性增加,并且将结果与某些已知的抗生素进行了比较。

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