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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >ISOMER EFFECT ON THE STRUCTURE AND CHEMICAL REACTIVITY OF DIRUTHENIUM COMPLEXES - SYNTHESIS AND CHARACTERIZATION OF THE (4,0), (3,1), AND (2,2) TRANS ISOMERS OF RU-2(F(5)AP)(4)CL AND RU-2(F(5)AP)(4)(C-EQUIVALENT-TO-CC6H5)(2) WHERE F(5)AP IS THE 2-(2,
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ISOMER EFFECT ON THE STRUCTURE AND CHEMICAL REACTIVITY OF DIRUTHENIUM COMPLEXES - SYNTHESIS AND CHARACTERIZATION OF THE (4,0), (3,1), AND (2,2) TRANS ISOMERS OF RU-2(F(5)AP)(4)CL AND RU-2(F(5)AP)(4)(C-EQUIVALENT-TO-CC6H5)(2) WHERE F(5)AP IS THE 2-(2,

机译:异构体对二钌络合物的结构和化学反应性的影响-RU-2(F(5)AP)(4)的(4,0),(3,1)和(2,2)反式异构体的合成与表征)CL和RU-2(F(5)AP)(4)(C-等效于CC6H5)(2),而F(5)AP为2-(2,

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The syntheses and characterization of the (4,0), (3,1), and (2,2) trans isomers of Ru-2(F(5)ap)(4)Cl and Ru-2(F(5)ap)(4)-(C=CC6H5)(2) are reported where F(5)ap is the 2-(2,3,4,5,6-pentafluoroanilino)pyridinate anion. The (4,0), (3,1), and (2,2) trans isomers of Ru-2(F(5)ap)(4)Cl were separated on a silica gel column following the reaction between Ru-2(CH3COO)(4)Cl and molten HF(5)ap under argon. The (4,0), (3,1), and (2,2) trans isomers of Ru-2(F(5)ap)(4)-(C=CC6H5)(2) were obtained by reaction of their respective isomer of Ru-2(F(5)ap)(4)Cl with LiC=CC6H5 in THF at room temperature. The three isomers of Ru-2(F(5)ap)(4)Cl and Ru-2(F(5)ap)(4)(C=CC6H5)(2) were characterized by H-1 and F-19 NMR, ESR, and IR spectroscopy, mass spectrometry and electrochemistry. Each (RuRuIII)-Ru-II isomer of RU2(F-5 ap)(4)Cl is paramagnetic and undergoes two oxidations and one reduction in CH2Cl2, 0.1 M TBAP while each Ru-2(III) isomer of Ru-2(F(5)ap)(4)(C=CC6H5)(2) is diamagnetic and undergoes one oxidation and two reductions under the same solution conditions. All of the redox processes are reversible and involve metal-centered one-electron transfers. The singly reduced products of the (4,0), (3,1), and (2,2) trans isomers of Ru-2(F(5)ap)(4)(C=CC6H5)(2) were electrogenerated and display ESR signals consistent with the presence of a single unpaired electron. Molecular structures of the three isomers of Ru-2(F(5)ap)(4)(C=CC6H5)(2) were also determined. The (4,0) isomer crystallizes in the monoclinic space group P2(1)/c with a = 23.436(6) Angstrom, b = 20.640(6) Angstrom, c = 23.504(6) Angstrom, beta = 105.82(2)degrees, and Z = 8, while the (3,1) isomer crystallizes in the monoclinic space group P2(1) with a 15.621(3) Angstrom, b = 16.427(3) Angstrom, c = 21.166(5) Angstrom, beta = 93.91(2)degrees, and Z = 4. The (2,2) trans isomer crystallizes in the triclinic space group P(1) with a = 12.819(5) Angstrom, b = 13.390(4) Angstrom, c = 17.827(5) Angstrom, alpha = 85.04(2)degrees, beta = 72.66(2)degrees, gamma = 68.47(2)degrees, and Z = 2. The average Ru-Ru bond distances in the (4,0), (3,1), and (2,2) trans isomers of Ru-2(F(5)ap)4-(C=CC6H5)(2) are 2.450(1), 2.475(1), and 2.473(1) Angstrom, respectively. [References: 32]
机译:Ru-2(F(5)ap)(4)Cl和Ru-2(F(5))的(4,0),(3,1)和(2,2)反式异构体的合成与表征报道了ap)(4)-(C = CC6H5)(2),其中F(5)ap是2-(2,3,4,5,6-五氟苯胺基)吡啶酸根阴离子。 Ru-2之间的反应后,在硅胶柱上分离Ru-2(F(5)ap)(4)Cl的(4,0),(3,1)和(2,2)反式异构体(CH3COO)(4)Cl和熔融的HF(5)ap在氩气下。 Ru-2(F(5)ap)(4)-(C = CC6H5)(2)的(4,0),(3,1)和(2,2)反式异构体是通过它们的反应获得的在室温下,Ru-2(F(5)ap)(4)Cl的各自异构体在THF中的LiC = CC6H5。 Ru-2(F(5)ap)(4)Cl和Ru-2(F(5)ap)(4)(C = CC6H5)(2)的三个异构体的特征是H-1和F-19 NMR,ESR和IR光谱,质谱和电化学。 RU2(F-5 ap)(4)Cl的每个(RuRuIII)-Ru-II异构体都是顺磁性的,并经历两次氧化和CH2Cl2的一次还原,0.1 M TBAP,而Ru-2(Ru-2(R-5))的每种Ru-2(III)异构体F(5)ap)(4)(C = CC6H5)(2)是反磁性的,并且在相同的溶液条件下进行一次氧化和两次还原。所有的氧化还原过程都是可逆的,并且涉及以金属为中心的单电子转移。电生成Ru-2(F(5)ap)(4)(C = CC6H5)(2)的(4,0),(3,1)和(2,2)反式异构体的单还原产物并显示与单个未配对电子一致的ESR信号。还确定了Ru-2(F(5)ap)(4)(C = CC6H5)(2)的三个异构体的分子结构。 (4,0)异构体在单斜空间群P2(1)/ c中结晶,a = 23.436(6)埃,b = 20.640(6)埃,c = 23.504(6)埃,beta = 105.82(2)度,Z = 8,而(3,1)异构体在单斜空间群P2(1)/ n中以15.621(3)埃结晶,b = 16.427(3)埃,c = 21.166(5)埃结晶,β= 93.91(2)度,Z =4。(2,2)反式异构体在三斜空间群P(1 )中结晶,其a = 12.819(5)埃,b = 13.390(4) )埃,c = 17.827(5)埃,alpha = 85.04(2)度,beta = 72.66(2)度,γ= 68.47(2)度,Z =2。( Ru-2(F(5)ap)4-(C = CC6H5)(2)的4,0),(3,1)和(2,2)反式异构体分别为2.450(1),2.475(1)和2.473(1)埃。 [参考:32]

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