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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 >Metal-ligand bonding in coinage metal-phosphine complexes: The synthesis and structure of some low-coordinate silver(I)-phosphine complexes
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Metal-ligand bonding in coinage metal-phosphine complexes: The synthesis and structure of some low-coordinate silver(I)-phosphine complexes

机译:造币金属-膦配合物中的金属-配体键合:一些低配位的银(I)-膦配合物的合成和结构

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摘要

Reaction of AgBF4 with 2 equiv of Ph3P in acetonitrile followed by recrystallization from dichloromethane/ hexane yields the mixed phosphine-nitrile complex [(Ph3P)(2)AgNCCH3]BF4 (I) as its dichloromethane solvate, I . 0.5CH(2)Cl(2). This solvate crystallizes in the monoclinic space group C2/c with a = 22.928(5), b = 12.700(3), c = 25.156(5) Angstrom, beta = 97.53(3)degrees, and Z = 8. The acetonitrile ligand in I is loosely bound to the metal center and easily lost, even in the solid state, without decomposition. Hence, recrystallization of dried samples of I.0.5CH(2)-Cl-2 from CH2Cl2/hexane results in isolation of the novel low-coordinate phosphine complex [(Ph3P)(2)Ag]BF4 (II). II crystallizes in the monoclinic space group C2/c with a = 21.733(9), b = 12.272(4), c = 24.356(9) Angstrom, beta = 95.01(3)degrees, and Z = 8. In both cases, a weak interaction is present between a fluorine atom of the BF4- anion and the silver cation. However, these interactions appear to be essentially electrostatic rather than dative in nature, implying that I is best considered a three-coordinate silver complex and that II is a rare, structurally characterized example of a two-coordinate silver-phosphine complex. These solid-state geometric assignments are supported by P-31 NMR studies, which reveal a Ag-P coupling constant of 550 Hz for II, consistent with the presence of a linear two-coordinate complex in solution. The NMR data also indicate that the phosphine ligands are involved in exchange processes, which are accelerated by the presence of a donor solvent such as acetonitrile. Comparison of LI with its gold analogue supports the previously stated Concept that gold atoms are smaller than silver atoms. An analysis of 13 other isostructural pairs of silver and gold complexes culled from the crystallographic database lends further support to this concept. [References: 64]
机译:AgBF4与2当量的Ph3P在乙腈中反应,然后从二氯甲烷/己烷中重结晶,得到混合的膦腈混合物[(Ph3P)(2)AgNCCH3] BF4(I),为二氯甲烷溶剂化物I。 0.5CH(2)Cl(2)。该溶剂化物在单斜空间群C2 / c中结晶,其a = 22.928(5),b = 12.700(3),c = 25.156(5)埃,β= 97.53(3)度和Z =8。乙腈配体在I中,它松散地结合在金属中心上,即使在固态下也很容易丢失而不会分解。因此,从CH2Cl2 /己烷中重结晶I.0.5CH(2)-Cl-2的干燥样品导致分离出新型的低配位膦络合物[(Ph3P)(2)Ag] BF4(II)。 II在单斜空间群C2 / c中以a = 21.733(9),b = 12.272(4),c = 24.356(9)埃,β= 95.01(3)度和Z = 8结晶。 BF4-阴离子的氟原子与银阳离子之间存在弱相互作用。但是,这些相互作用实际上本质上是静电的,而不是导电的,这意味着我最好被认为是三配位的银配合物,而II是稀有的,具有结构特征的二配位的银-膦配合物。这些固态几何分配得到P-31 NMR研究的支持,该研究揭示了II的550 Hz的Ag-P耦合常数,与溶液中线性二坐标络合物的存在一致。 NMR数据还表明,膦配体参与了交换过程,该交换过程因供体溶剂(如乙腈)的存在而加速。 LI与其金类似物的比较支持先前提出的概念,即金原子小于银原子。从晶体学数据库中选出的其他13对银和金配合物的同构结构的分析为这一概念提供了进一步的支持。 [参考:64]

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