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首页> 外文期刊>Chemistry: A European journal >Mixed-Valence Ruthenium Complexes Rotating through a Conformational Robin–Day Continuum
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Mixed-Valence Ruthenium Complexes Rotating through a Conformational Robin–Day Continuum

机译:价构象罗宾·天连续体旋转的混合价钌络合物

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The conformational energy landscape and the associated electronic structure and spectroscopic properties (UV/Visear-infrared (NIR) and IR) of three formally d~5/d~6 mixed-valence diruthenium complex cations, [{Ru- (dppe)Cp*}_2(μ-C≡CC_6H_4C≡C)]~+, [1]~+, [trans-{RuCl(dppe)_2}_2(μ- C≡CC_6H_4C≡C)]~+, [2]~+, and the Creutz–Taube ion, [{Ru- (NH_3)_5}_2(m-pz)]~(5+), [3]~(5+) (Cp=cyclopentadienyl; dppe=1,2- bis(diphenylphosphino)ethane; pz=pyrazine), have been studied using a nonstandard hybrid density functional BLYP35 with 35% exact exchange and continuum solvent models. For the closely related monocations [1]~+ and [2]~+, the calculations indicated that the lowest-energy conformers exhibited delocalized electronic structures (or class III mixedvalence character). However, these minima alone explained neither the presence of shoulder(s) in the NIR absorption envelope nor the presence of features in the observed vibrational spectra characteristic of both delocalized and valencetrapped electronic structures. A series of computational models have been used to demonstrate that the mutual conformation of the metal fragments-and even more importantly the orientation of the bridging ligand relative to those metal centers-influences the electronic coupling sufficiently to afford valence-trapped conformations, which are of sufficiently low energy to be thermally populated. Areas in the conformational phase space with variable degrees of symmetry breaking of structures and spin-density distributions are shown to be responsible for the characteristic spectroscopic features of these two complexes. The Creutz– Taube ion [3]~(5+) also exhibits low-lying valence-trapped conformational areas, but the electronic transitions that characterize these conformations with valence-localized electronic structures have low intensities and do not influence the observed spectroscopic characteristics to any notable extent.
机译:三种形式为d〜5 / d〜6混合价二价钌络合物阳离子[{Ru-(dppe)的构象能图及相关的电子结构和光谱性质(UV / Vis /近红外(NIR)和IR) Cp *} _ 2(μ-C≡CC_6H_4C≡C)]〜+,[1]〜+,[反式-{RuCl(dppe)_2} _2(μ-C≡CC_6H_4C≡C)]〜+,[2] 〜+和Creutz-Taube离子[[Ru-(NH_3)_5} _2(m-pz)]〜(5 +),[3]〜(5+)(Cp =环戊二烯基; dppe = 1,2 -使用具有35%精确交换和连续溶剂模型的非标准杂化密度官能团BLYP35,研究了双(二苯基膦基乙烷); pz =吡嗪。对于紧密相关的单阳离子[1]〜+和[2]〜+,计算表明最低能量的构象异构体表现出离域电子结构(或III类混合价特性)。但是,仅这些最小值不能解释在NIR吸收包络中是否存在肩部,也不能解释离域和价电子陷阱结构的观察到的振动光谱特征中的特征。一系列计算模型已被用来证明金属碎片的相互构象,更重要的是桥连配体相对于那些金属中心的取向,足以充分影响电子耦合,从而提供价态俘获的构象。足够低的能量以进行热填充。构象相空间中具有可变的对称度破坏结构和自旋密度分布的区域显示出负责这两个配合物的特征光谱特征。 Creutz–Taube离子[3]〜(5+)也显示出低价的价位陷获构象区,但表征这些构型的电子跃迁具有价位局限的电子结构,其强度低,并且不影响观察到的光谱特性。任何显着的程度。

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