首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Spectroscopic (UV/VIS, resonance Raman) and spectroelectrochemical study of platinum(II) complexes with 2,2 '-bipyridine and aromatic thiolate ligands
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Spectroscopic (UV/VIS, resonance Raman) and spectroelectrochemical study of platinum(II) complexes with 2,2 '-bipyridine and aromatic thiolate ligands

机译:带有2,2'-联吡啶和芳族硫醇盐配体的铂(II)配合物的光谱学(紫外/可见,共振拉曼光谱)和光谱电化学研究

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A series of complexes [Pt(bpy)(4-XC6H4S)(2)] (bpy = 2,2'-bipyridine; X = NO2, H, MeO or Me2N) have been synthesized and characterised spectroscopically. All absorb moderately in the visible region; the molar absorption coefficients of the solvatochromic absorption band lie below the values for the corresponding dithiolate complexes, indicating a slightly distorted planar geometry and a smaller HOMO - LUMO overlap. Resonance Raman, cyclic voltammetric and UV/VIS spectroelectrochemical experiments were carried out to confirm the charge transfer-to-diimine character of the visible electronic transition(s) directed from a p(S)-pi(Ph)/d(Pt) delocalised orbital manifold to the pi(1)* LUMO of the 2,2'-bipyridine ligand. Consistent with this bonding situation: (i) the reduction of [Pt(bpy)(4-XC6K4S)(2)] is initially localised on the bpy ligand; for X = NO2 the second and third added electrons enter the vacant pi* orbitals on the 4-NO2 substituents; (ii) the resonance Raman spectra of [Pt(bpy)(4-MeOC6H4S)(2)] show, besides the internal bpy modes, only a weak effect for intrathiolate (Ph-S) and v(Pt-S) vibrations; and (iii) the oxidation is initially a one-electron process due to electronic interaction of the thiolate ligands through the platinum centre. The strongly thiolate-dependent oxidation potentials indicate a prevailing thiolate character of the HOMO. [References: 53]
机译:合成了一系列配合物[Pt(bpy)(4-XC6H4S)(2)](bpy = 2,2'-联吡啶; X = NO2,H,MeO或Me2N),并进行了光谱表征。全部在可见光区域吸收适度;溶剂变色吸收带的摩尔吸收系数低于相应的二硫醇盐配合物的值,表明平面几何形状略有变形,HOMO-LUMO重叠较小。进行了共振拉曼,循环伏安法和UV / VIS光谱电化学实验,以确认从ap(S)-pi(Ph)/ d(Pt)离域轨道定向的可见电子跃迁的电荷转移至二亚胺特征歧管到2,2'-联吡啶配体的pi(1)* LUMO。与这种结合情况一致:(i)[Pt(bpy)(4-XC6K4S)(2)]的还原最初位于bpy配体上;当X = NO2时,第二和第三加成电子进入4-NO2取代基上的空π*轨道; (ii)[Pt(bpy)(4-MeOC6H4S)(2)]的共振拉曼光谱显示,除了内部bpy模式外,仅对硫醇盐(Ph-S)和v(Pt-S)振动产生微弱的影响; (iii)由于硫醇盐配体通过铂中心发生电子相互作用,因此氧化最初是单电子过程。强烈依赖硫醇盐的氧化电位表明HOMO具有普遍的硫醇盐特征。 [参考:53]

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