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新型[W3PdS4H3(dmpe)3(CO)]+立方烷簇合物的合成及在酸性介质中配位氢化物取代反应的动力学研究。

Synthesis of the novel [W3PdS4H3(dmpe)3(CO)]+ cubane cluster and kinetic studies on the substitution of coordinated hydrides in acidic media.

作者信息

Algarra Andrés G, Basallote Manuel G, Feliz Marta, Fernandez-Trujillo M Jesús, Guillamón Eva, Llusar Rosa, Vicent Cristian

机构信息

Departamento de Ciencia de los Materiales e Ingeniería Metalúrgica y Química Inorgánica, Facultad de Ciencias, Universidad de Cádiz, Apartado 40, Puerto Real, 11510 Cádiz, Spain.

出版信息

Inorg Chem. 2006 Jul 10;45(14):5576-84. doi: 10.1021/ic052184u.

Abstract

Reaction of the incomplete cuboidal [W3S4H3(dmpe)3]+ cluster with a Pd(0) complex under a CO atmosphere produces a rare example of a heterodimetallic hydrido cluster of formula [W3PdS4H3(dmpe)3(CO)]+ ([1]+). There are not significant changes in the W-W bond lengths on going from the trinuclear to the tetranuclear cluster. The average W-W and W-Pd bond distances of 2.769[10] and 2.90[2] A, respectively, are consistent with the presence of single bonds between metal atoms. The heterodimetallic [1]+ complex is easier to oxidize and more difficult to reduce than its trinuclear precursor, which reflects the electron-donating capability of the Pd(CO) fragment. However, mechanistic studies on the reaction of [1]+ with acids show a lower basicity for this complex in comparison with that of its trinuclear precursor, so there is a major electron-density rearrangement within the cluster core upon Pd(CO) coordination. This rearrangement is also reflected in an unusual expansion of the sulfur tetrahedron within the W3PdS4 core with the concomitant elongation of the W-S bond distances by 0.04 A with respect to the analogous bond lengths in the trinuclear precursor. For those thermodynamically favored proton-transfer processes, the reaction mechanism of [1]+ with acids is quite similar to that observed for the incomplete trinuclear cluster, with only small changes in the rate constants. The reaction of [1]+ with HCl in acetonitrile/water mixtures produces [W3PdS4Cl3(dmpe)3(CO)]+ ([2]+) in two kinetically distinguishable steps. Proton transfer occurs in the initial step, in which the W-H bonds are attacked by the acid to yield dihydrogen-bonded adducts that are further attacked by an acetonitrile molecule to give [W3PdS4(CH3CN)3(dmpe)3(CO)]4+ and dihydrogen. The nature of processes involved in the second step are not well-understood with the present data, although it is very likely that these correspond to some secondary processes. In the third resolved step, the coordinated CH3CN ligands in [W3PdS4(CH3CN)3(dmpe)3(CO)]4+ are substituted by Cl- to afford the final [2]+ product. No reaction is observed between [1]+ and HCl in neat acetonitrile, whereas the product of the reaction of [1]+ with HBF4 or Hpts (pts- = p-toluenesulfonate) in this solvent is [W3PdS4(CH3CN)3(dmpe)3(CO)]4+. The reaction occurs in a single kinetic step with a first- (Hpts) or second-order (HBF4) dependence with respect to the acid. The first- and second-order acid dependences can be interpreted through the initial formation of dihydrogen adducts with one or two acid molecules, respectively.

摘要

在CO气氛下,不完全立方烷型[W₃S₄H₃(dmpe)₃]⁺簇与Pd(0)配合物反应生成了罕见的通式为[W₃PdS₄H₃(dmpe)₃(CO)]⁺([1]⁺)的异双核氢化物簇。从三核簇转变为四核簇时,W-W键长没有显著变化。W-W键和W-Pd键的平均键距分别为2.769[10] Å和2.90[2] Å,这与金属原子之间存在单键相符。与其三核前体相比,异双核[1]⁺配合物更容易被氧化且更难被还原,这反映了Pd(CO)片段的给电子能力。然而,对[1]⁺与酸反应的机理研究表明,该配合物的碱性比其三核前体低,因此在Pd(CO)配位后,簇核内发生了主要的电子密度重排。这种重排也反映在W₃PdS₄核内硫四面体异常扩张,同时W-S键距相对于三核前体中的类似键长伸长了0.04 Å。对于那些热力学上有利的质子转移过程,[1]⁺与酸的反应机理与不完全三核簇所观察到的非常相似,只是速率常数有微小变化。[1]⁺与HCl在乙腈/水混合溶剂中的反应分两个动力学上可区分的步骤生成[W₃PdS₄Cl₃(dmpe)₃(CO)]⁺([2]⁺)。质子转移发生在第一步,其中W-H键被酸攻击生成氢键加合物,该加合物再被乙腈分子进一步攻击生成[W₃PdS₄(CH₃CN)₃(dmpe)₃(CO)]⁴⁺和氢气。尽管目前的数据对第二步所涉及的过程性质了解不多,但很可能这些过程对应于一些二级过程。在第三步解析步骤中,[W₃PdS₄(CH₃CN)₃(dmpe)₃(CO)]⁴⁺中配位的CH₃CN配体被Cl⁻取代,得到最终产物[2]⁺。在纯乙腈中未观察到[1]⁺与HCl的反应,而在该溶剂中[1]⁺与HBF₄或Hpts(pts⁻ = 对甲苯磺酸根)反应的产物是[W₃PdS₄(CH₃CN)₃(dmpe)₃(CO)]⁴⁺。该反应以单动力学步骤发生,对酸的反应级数为一级(Hpts)或二级(HBF₄)。一级和二级酸依赖关系可分别通过与一个或两个酸分子最初形成氢气加合物来解释。

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