首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Copper(I)/silver(I)-phosphine-N-{(2-pyridyl)methyliden}-6-coumarin complexes: Syntheses, structures, redox interconversion, photophysical properties and DFT computation
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Copper(I)/silver(I)-phosphine-N-{(2-pyridyl)methyliden}-6-coumarin complexes: Syntheses, structures, redox interconversion, photophysical properties and DFT computation

机译:铜(I)/银(I)-膦-N-{(2-吡啶基)甲基} -6-香豆素配合物:合成,结构,氧化还原互转换,光物理性质和DFT计算

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Mixed ligand complexes of Cu(I) and Ag(I) with bis(diphenylphosphino) methane (dppm)/1,2-bis(diphenylphosphino)ethane (dppe) and N-{(2-pyridyl) methyliden}-6-coumarin (L) have been synthesized and characterized by elemental analyses, conductivity, 1H NMR, UV-Vis and fluorescence spectral data. The coordination of dppm to M(I) forms a binuclear metallacycle, [(L)M(μ-dppm)_2M(L)](X)_2 (X = NO_3 or ClO _4), and one of the complexes has been characterized by single crystal X-ray structure analysis. The dppe ligand is a bidentate chelator, which is supported by the X-ray structure of [Cu(dppe)(L)]ClO_4. In the Ag(I) complex, dppe is serving as a bridging agent to form the binuclear complex [(L)Ag(μ-dppe)Ag(L)](NO_3)_2, and NO_3 - asymmetrically chelates Ag(I), which exhibits solvent polarity dependent coordination. In a coordinating polar solvent, like MeCN, the nitrate group dissociates and shows conductivity, while in nitrobenzene the complex is non-conducting and supports no dissociation. The complexes are more fluorescent than free L. Cyclic voltammetry shows a Cu(II)/Cu(I) quasireversible couple, while the Ag(I) complexes exhibit deposition of Ag(0) on the electrode surface. The coulometric and Cl2 oxidation of the Cu(I) complexes have isolated Cu(II) complexes that are established by spectroscopic and magnetic data. The electronic configuration of the complexes is assessed by DFT computation, and the spectral and redox properties are explained
机译:Cu(I)和Ag(I)与双(二苯基膦基)甲烷(dppm)/ 1,2-双(二苯基膦基)乙烷(dppe)和N-{(2-吡啶基)亚甲基} -6-香豆素的混合配体配合物(L)已通过元素分析,电导率,1H NMR,UV-Vis和荧光光谱数据合成并表征。 dppm与M(I)的配位形成双核金属环[[L] M(μ-dppm)_2M(L)](X)_2(X = NO_3或ClO _4),其中一种配合物已被表征通过单晶X射线结构分析。 dppe配体是双齿螯合剂,由[Cu(dppe)(L)] ClO_4的X射线结构支撑。在Ag(I)络合物中,dppe作为桥联剂形成双核络合物[(L)Ag(μ-dppe)Ag(L)](NO_3)_2和NO_3-不对称地螯合Ag(I),表现出与溶剂极性有关的配位。在配位极性溶剂(如MeCN)中,硝酸根基团解离并显示出电导率,而在硝基苯中,络合物不导电且不支持解离。配合物比自由L荧光更强。循环伏安法显示Cu(II)/ Cu(I)准可逆对,而Ag(I)配合物则在电极表面沉积Ag(0)。 Cu(I)配合物的电量分析和Cl2氧化具有分离的Cu(II)配合物,这些配合物是通过光谱和磁数据建立的。通过DFT计算评估配合物的电子构型,并解释其光谱和氧化还原特性

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