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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Ruthenium(II) complexes with tetradentate pyridylthioazoimine [N,S,N,N] ligands: Synthesis, crystal structure and spectroscopy
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Ruthenium(II) complexes with tetradentate pyridylthioazoimine [N,S,N,N] ligands: Synthesis, crystal structure and spectroscopy

机译:四齿吡啶基硫代偶氮亚胺[N,S,N,N]配体的钌(II)配合物:合成,晶体结构和光谱

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摘要

The Ru(II) complexes cis-[Ru(L)Cl_2] (C1-C3) of novel tetradentate NSNN ligands (L) {where L is C_5H_4N-CH 2-S-C_6H_4N=C(COCH_3)-N=N-C _6H_4X, and X is H (L1), CH3 (L2) and Br (L3)}, were synthesized and characterized by spectroscopy (IR, UV/vis and NMR), cyclic voltammetry and crystallography. The tetradentate ligands were isolated as the amidrazones H_2L {where H_2L is C_5H _4N-CH_2-S-C_6H_4NH-C(COCH _3)+N-NH-C_6H_4X and X is H (H_2L1), CH3 (H_2L_2) and Br (H_2L_3)} as shown by crystallography of H2L1, but oxidize to azoimines during the formation of the Ru(II) complexes. A crystallographic analysis of C1 showed that the Ru(II) centre is in a distorted octahedral coordination sphere in which the tetradentate ligand occupies three equatorial sites and one axial site (two azoimine nitrogens and a thio sulfur in the equatorial plane and an axial pyridine nitrogen) and two chlorides occupying axial and equatorial coordination sites. The Ru(II) oxidation state is greatly stabilized by the novel tetradentate ligand, showing Ru(III/II) couples ranging from 1.43 to 1.51 V. The absorption spectrum of C1 in acetonitrile was modelled by time-dependent density functional theory.
机译:新的四齿NSNN配体(L)的Ru(II)络合物cis- [Ru(L)Cl_2](C1-C3){其中L是C_5H_4N-CH 2-S-C_6H_4N = C(COCH_3)-N = NC _6H_4X ,并且X是H(L 1),CH 3(L 2)和Br(L 3)},通过光谱法(IR,UV / vis和NMR),循环伏安法和晶体学进行表征。分离四齿配体作为酰胺ami H_2L(其中H_2L是C_5H _4N-CH_2-S-C_6H_4NH-C(COCH _3)+ N-NH-C_6H_4X和X是H(H_2L1),CH3(H_2L_2)和Br(H_2L_3) }如H2L1的晶体学所示,但在Ru(II)络合物的形成过程中被氧化为偶氮亚胺。 C1的晶体学分析表明,Ru(II)中心位于扭曲的八面体配位球中,其中四齿配体占据了三个赤道位点和一个轴向位点(赤道平面上两个偶氮亚胺氮和硫硫基以及一个轴向吡啶氮) )和两种氯化物占据轴向和赤道的协调位置。新型四齿配体极大地稳定了Ru(II)的氧化态,显示Ru(III / II)的偶合范围为1.43至1.51V。乙腈中C1的吸收光谱通过时变密度泛函理论建模。

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