首页> 外文期刊>Journal of Organometallic Chemistry >Unprecedented oxidation of aldimine to carboxamido function during reactivity studies on ruthenium complex with acidified nitrite solution: Synthesis of ruthenium nitrosyl complex having {RuNO} 6 moiety and photorelease of coordinated NO
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Unprecedented oxidation of aldimine to carboxamido function during reactivity studies on ruthenium complex with acidified nitrite solution: Synthesis of ruthenium nitrosyl complex having {RuNO} 6 moiety and photorelease of coordinated NO

机译:在酸化亚硝酸盐溶液的反应性研究期间,前所未有的醛亚胺氧化族醛氧化物:酸化亚硝酸盐溶液的合成,具有{runo} 6 部分和协调的光致释放

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摘要

Ruthenium(II) complex namely [Ru(L1)(PPh3)Cl2] (1) [where L1?=?N-(pyridin-2-ylmethylene)quinolin-8-amine] derived from the tridentate ligand containing two pyridine and one imine donors was synthesized. This ruthenium(II) complex was treated with acidified nitrite solution to afford a ruthenium nitrosyl complex [Ru(L2)(PPh3)(NO)Cl](ClO4) (2) [where L2?=?N-(quinolin-8-yl)picolinamide]. These complexes were characterized by elemental analysis, electronic absorption, NMR (1H and31P NMR) and IR spectral studies. The molecular structure of2was confirmed by X-ray crystallography and the redox property of metal centers was investigated. During nitrosylation of complex1, we found out the oxidation of imine functional group to amide functional group in the nitrosyl complex (2). Here, we also examined probable mechanism of nitric oxide (NO) mediated oxidation of imine to carboxamido group. The resultant nitrosyl complex2was found to be photoactive and could deliver NO on demand upon illumination of light.
机译:钌(II)复合物即[Ru(L1)(PPH3)Cl 2](1)[其中L1≤=α=Δ=Δ=Δn-(吡啶-2-基甲基)喹啉-8-胺]衍生自含有两个吡啶的三齿配体和一个亚胺供体是合成的。将该钌(II)复合物用酸化的亚硝酸盐溶液处理,得到钌亚硝基络合物[Ru(L2)(PPH3)(NO)Cl](CLO 4)(2)[其中L2 =Δn-(喹啉-8-(喹啉-8-) YL)picolinamide]。这些配合物的特征是通过元素分析,电子吸收,NMR(1H和31P NMR)和IR光谱研究。研究了X射线晶体学证实的2烃的分子结构和金属中心的氧化还原性能。在亚硝基化合物中的亚硝基化期间,我们发现亚胺官能团的氧化在亚硝基络合物中的酰胺官能团(2)。在这里,我们还检查了氧化氮的一氧化氮(NO)介导的亚胺氧化到羧酰胺基团的可能机制。所得亚硝基络合物2碳是光活性的,可以在光照照明时不需要提供不需要的。

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