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四(3,5-二磺酸基均三甲苯基)卟啉铑物种在水中与氢气、一氧化碳和烯烃的反应活性及平衡热力学研究

Reactivity and equilibrium thermodynamic studies of rhodium tetrakis(3,5-disulfonatomesityl)porphyrin species with H2, CO, and olefins in water.

作者信息

Fu Xuefeng, Li Shan, Wayland Bradford B

机构信息

Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.

出版信息

Inorg Chem. 2006 Nov 27;45(24):9884-9. doi: 10.1021/ic0615022.

Abstract

Aqueous (D2O) solutions of tetrakis(3,5-disulfonatomesityl)porphyrin rhodium(III) aquo/hydroxo complexes ([(TMPS)Rh(III)(D2O)2]-7 (1), [(TMPS)Rh(III)(OD)(D2O)]-8 (2), and [(TMPS)Rh(III)(OD)2]-9 (3)) react with hydrogen (D2) to form an equilibrium distribution with a rhodium hydride ([(TMPS)Rh-D(D2O)]-8 (4)) and a rhodium(I) complex ([(TMPS)Rh(I)(D2O)]-9 (5)). Equilibrium constants (298 K) are measured that define the distribution for all five of these (TMPS)Rh species in this system as a function of the dihydrogen (D2) and hydrogen ion (D+) concentrations. The hydride complex [(TMPS)Rh-D(D2O)]-8 is a weak acid in D2O (Ka(298 K) = 4.3 x 10(-8)). Steric demands of the TMPS porphyrin ligand prohibit formation of a Rh(II)-Rh(II)-bonded complex, related rhodium(I)-rhodium(III) adducts, and intermolecular association of alkyl complexes which are prominent features of the rhodium tetra(p-sulfonatophenyl)porphyrin ((TSPP)Rh) system. The rhodium(II) complex ([(TMPS)Rh(II)(D2O)]-8) reacts with water to form hydride and hydroxide complexes and is not observed in D2O. The (TMPS)Rh-OD and (TMPS)Rh-D bond dissociation free energies (BDFE) are virtually equal and have a value of approximately 60 kcal mol(-1). Reactions of [(TMPS)Rh-D(D2O)]-8 in water with CO and olefins produce rhodium formyl and alkyl complexes which have equilibrium thermodynamic values comparable to the values for the corresponding substrate reactions of [(TSPP)Rh-D(D2O)]-4.

摘要

四(3,5 - 二磺基间苯二甲酰)卟啉铑(III)水合/羟基配合物([(TMPS)Rh(III)(D₂O)₂]-7(1)、[(TMPS)Rh(III)(OD)(D₂O)]-8(2)和[(TMPS)Rh(III)(OD)₂]-9(3))的水(D₂O)溶液与氢气(D₂)反应,形成与氢化铑([(TMPS)Rh - D(D₂O)]-8(4))和铑(I)配合物([(TMPS)Rh(I)(D₂O)]-9(5))的平衡分布。测定了平衡常数(298 K),这些常数定义了该体系中这五种(TMPS)Rh物种的分布情况,是二氢(D₂)和氢离子(D⁺)浓度的函数。氢化配合物[(TMPS)Rh - D(D₂O)]-8在D₂O中是弱酸(Ka(298 K) = 4.3×10⁻⁸)。TMPS卟啉配体中的空间位阻阻碍了Rh(II)-Rh(II)键合配合物、相关的铑(I)-铑(III)加合物以及烷基配合物的分子间缔合的形成,而这些是四(对磺基苯基)卟啉铑((TSPP)Rh)体系的显著特征。铑(II)配合物([(TMPS)Rh(II)(D₂O)]-8)与水反应形成氢化和羟基配合物,在D₂O中未观察到。(TMPS)Rh - OD和(TMPS)Rh - D键解离自由能(BDFE)实际上相等,约为60 kcal mol⁻¹。[(TMPS)Rh - D(D₂O)]-8在水中与CO和烯烃的反应生成铑甲酰基和烷基配合物,其平衡热力学值与[(TSPP)Rh - D(D₂O)]-4相应底物反应的值相当。

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