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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 >AB INITIO AND EXPERIMENTAL STUDIES ON THE STRUCTURE AND RELATIVE STABILITY OF THE CIS-HYDRIDE-ETA-2-DIHYDROGEN COMPLEXES [(P(CH(2)CH(2)PPH3))M(H)(ETA(2)-H-2)](+) (M=FE, RU)
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AB INITIO AND EXPERIMENTAL STUDIES ON THE STRUCTURE AND RELATIVE STABILITY OF THE CIS-HYDRIDE-ETA-2-DIHYDROGEN COMPLEXES [(P(CH(2)CH(2)PPH3))M(H)(ETA(2)-H-2)](+) (M=FE, RU)

机译:CIS-氢化物-ETA-2-二氢配合物[(P(CH(2)CH(2)PPH3))M(H)(ETA(2)-H-的结构和相对稳定性的从头算和实验研究2)](+)(M = FE,RU)

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摘要

Ab initio calculations (DMOL method) including the estimate of the total energy and the full optimization of the geometrical parameters have been used to study the electronic structures and the coordination geometries of the model systems [{P(CH2CH2PH2)(3)}M(H)(L)](+) (M = Fe, L = H-2, C2H4, CO, N-2; M = Ru, L = H-2) Single crystal X-ray analyses have been carried out on the complexes [(PP3)Fe(H)(eta(2)-H-2)]BP4 . 0.5THF (1 . 0.5THF), [(PP3)Fe(H)(CO)]BPh(4) . THF (3 . THF), and [(PP3)Ru(H)(eta(2)-H-2)]BPh(4) . 0.5THF (5 . 0.5THF) [PP3 = P(CH(2)CH(2)PPh(2))(3)]. Crystal data: for 1 . 0.5THF, triclinic P1 (No. 2), a = 17.626(3) Angstrom, b = 14.605(3) Angstrom, c = 12.824(4) Angstrom, alpha = 90.09(2)degrees, beta = 103.87(2)degrees, gamma = 107.46(2)degrees, Z = 2, R = 0.082; for 3 . THF, triclinic P1 (No. 2), a = 12.717(2) Angstrom, b = 14.553(1) Angstrom, c = 17.816(2) Angstrom, alpha = 72.90(1)degrees, beta = 76.82(2)degrees, gamma = 89.71(1)degrees, Z = 2, R = 0.067; for 5 . 0.5THF, monoclinic P2/1a (No. 14), a = 19.490(5) Angstrom, b = 19.438(2) Angstrom, c = 16.873(5) Angstrom, beta = 110.96(2)degrees, Z = 4, R = = 0.074. On the basis of theoretical calculations, X-ray analyses, and multinuclear NMR studies, all of the complexes of the formula [(PP3)M(H)(L)]BPh(4) [M = Fe, L = H-2 (1), C2H4 (2), CO (3), N-2 (4); M = Ru, L = H-2 (5), C2H4 (6)] are assigned a distorted octahedral structure where the hydride (trans to a terminal phosphorus donor) and the L ligand occupy mutually cis positions. The theoretical calculations indicate that the H-2 ligand in the eta(2)-dihydrogen-hydride derivatives 1 and 5 is placed in the P-M-H plane (parallel orientation) and that there is an attractive interaction between the H and H-2 ligands. XPS measurements, performed on the iron complexes, show that the Fe --> L back-bonding interaction plays a leading role in 3. It is concluded that the stronger metal-H-2 bond in the dihydrogen-hydride complex 1, as compared to the Ru analog 5, is due to the greater d(metal) --> sigma*(H-H) back-donation as well as a more efficient interaction between the terminal hydride and an H of the dihydrogen ligand. This cis effect is suggested to contribute to the relative stability of the iron complexes, which increases in the order C2H4 < N-2 < H-2 < CO. [References: 84]
机译:从头算计算(DMOL方法)包括总能量的估计和几何参数的完全优化已用于研究模型系统的电子结构和配位几何[[P(CH2CH2PH2)(3)} M( H)(L)](+)(M = Fe,L = H-2,C2H4,CO,N-2; M = Ru,L = H-2)对单晶X射线分析配合物[(PP3)Fe(H)(eta(2)-H-2)] BP4。 0.5THF(1.0.5THF),[(PP3)Fe(H)(CO)] BPh(4)。 THF(3. THF)和[(PP3)Ru(H)(eta(2)-H-2)] BPh(4)。 0.5THF(5.0.5THF)[PP3 = P(CH(2)CH(2)PPh(2))(3)]。晶体数据:为1。 0.5THF,三斜晶P1(2号),a = 17.626(3)埃,b = 14.605(3)埃,c = 12.824(4)埃,α= 90.09(2)度,beta = 103.87(2)度,γ= 107.46(2)度,Z = 2,R = 0.082;为3。 THF,三斜晶P1(2号),a = 12.717(2)埃,b = 14.553(1)埃,c = 17.816(2)埃,alpha = 72.90(1)度,beta = 76.82(2)度,伽马= 89.71(1)度,Z = 2,R = 0.067; 5。 0.5THF,单斜晶P2 / 1a(第14号),a = 19.490(5)埃,b = 19.438(2)埃,c = 16.873(5)埃,beta = 110.96(2)度,Z = 4,R = = 0.074。根据理论计算,X射线分析和多核NMR研究,式[(PP3)M(H)(L)] BPh(4)的所有配合物[M = Fe,L = H-2 (1),C 2 H 4(2),CO(3),N-2(4); M = Ru,L = H-2(5),C2H4(6)]被指定为扭曲的八面体结构,其中氢化物(反式为末端磷供体)和L配体占据彼此的顺式位置。理论计算表明,η(2)-二氢氢化物衍生物1和5中的H-2配体位于P-M-H平面(平行方向)中,并且H和H-2配体之间存在吸引作用。在铁络合物上进行的XPS测量表明,Fe-> L的反向键相互作用在3中起主要作用。结论是,与之相比,二氢氢化物1中的金属H-2键更强类似物Ru的5原子归因于更大的d(金属)-> sigma *(HH)的背电荷,以及末端氢化物和二氢配体的H之间更有效的相互作用。有人认为这种顺式作用有助于铁配合物的相对稳定性,铁的相对稳定性按C2H4

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