首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Encapsulation of thallium(I) by tetranuclear rhodium or iridium complexes: Synthesis and molecular structure of heterobimetallic complexes stabilized by s(2)-d(8) bonding interactions
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Encapsulation of thallium(I) by tetranuclear rhodium or iridium complexes: Synthesis and molecular structure of heterobimetallic complexes stabilized by s(2)-d(8) bonding interactions

机译:nu(I)的四核铑或铱配合物的封装:s(2)-d(8)键合相互作用稳定的杂双金属配合物的合成和分子结构

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Reactions of [M-4(mu-pyS(2))(2)(cod)(4)] (M = Rh, Ir; pyS(2) = 2,6-pyridinedithiolate, cod = 1,5-cyclooctadiene) with equimolar amounts of TlPF6 give the heterobimetallic complexes [TlM4(mu-pyS(2))(2)(cod)(4)] [PF6]. An outstanding change in the coordination modes of the bridging ligands occurs on the incorporation of the Tl atom into the tetranuclear complexes with the concomitant formation of two unprecedented TL-Rh bonds. The X-ray structure of the cation [TlRh4(mu-pyS(2))(2)(cod)(4)](+) (3(+)) shows an almost linear Rh-Tl-Rh bonded subunit with Tl-Rh separations of 2.7686(9) and 2.7706(9) Angstrom. An unusual sawhorse coordination environment of the thallium atom is completed by binding to two pyridine nitrogen atoms. Theoretical calculations on this Rh-Tl interaction also support the formation of Rh-Tl bonds, which is accompanied by a slight electron transfer from thallium to both "Rh(cod)" fragments. An additional partial oxidation of the thallium center agrees with the large shift low field of the resonance (observed at 2926 ppm) in the Tl-205{H-1} NMR spectrum of [TlRh4(mu-pyS(2))(2)(cod)(4)][PF6] (3) at 273 K. Moreover, complex 3 undergoes two irreversible one-electron anodic processes at 0.52 and 0.93 V (CH2Cl2, 0.1 V s(-1)). These waves are shifted to higher potential than those of the parent complex [Rh-4(mu-pyS(2))(2)(cod)(4)]. In addition, the cathodic response of this complex shows an irreversible reduction process at -1.48 V in which the Tl+ ion is extruded. Interestingly, upon excitation in the solid state at 77 K, complex 3 shows strong luminescence which can be related to the Rh-Tl-Rh chromophore. [References: 83]
机译:[M-4(mu-pyS(2))(2)(cod)(4)]的反应(M = Rh,Ir; pyS(2)= 2,6-吡啶二硫盐,cod = 1,5-环辛二烯)用等摩尔量的TlPF6得到杂双金属配合物[T1M4(mu-pyS(2))(2)(cod)(4)] [PF6]。在将T1原子掺入四核配合物中并同时形成两个空前的TL-Rh键后,桥接配体的配位模式发生了显着变化。阳离子[TlRh4(mu-pyS(2)(2)(cod)(4)](+)(3(+))的X射线结构显示带有Tl的几乎线性的Rh-T1-Rh键合亚基-Rh间隔为2.7686(9)和2.7706(9)埃。 binding原子的不寻常的锯齿配位环境是通过与两个吡啶氮原子结合而完成的。关于此Rh-Tl相互作用的理论计算也支持Rh-Tl键的形成,伴随有从electron到两个“ Rh(cod)”片段的轻微电子转移。 center中心的另一部分氧化反应与[TlRh4(mu-pyS(2))(2)的Tl-205 {H-1} NMR光谱中的共振大位移低场(在2926 ppm处观察到)一致(cod)(4)] [PF6](3)在273K。此外,配合物3在0.52和0.93 V(CH2Cl2,0.1 V s(-1))上经历了两个不可逆的单电子阳极过程。这些波被转移到比母体[Rh-4(mu-pyS(2))(2)(cod)(4)]高的电势。另外,该络合物的阴极响应显示出在-1.48V下不可逆的还原过程,其中Tl +离子被挤出。有趣的是,在固态以77 K激发时,配合物3显示出强发光,这可能与Rh-T1-Rh发色团有关。 [参考:83]

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