Fu Xuefeng, Wayland Bradford B
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.
J Am Chem Soc. 2004 Mar 3;126(8):2623-31. doi: 10.1021/ja039218m.
Aqueous solutions of rhodium(III) tetra p-sulfonatophenyl porphyrin ((TSPP)Rh(III)) complexes react with dihydrogen to produce equilibrium distributions between six rhodium species including rhodium hydride, rhodium(I), and rhodium(II) dimer complexes. Equilibrium thermodynamic studies (298 K) for this system establish the quantitative relationships that define the distribution of species in aqueous solution as a function of the dihydrogen and hydrogen ion concentrations through direct measurement of five equilibrium constants along with dissociation energies of D(2)O and dihydrogen in water. The hydride complex ((TSPP)Rh-D(D(2)O)) is a weak acid (K(a)(298 K) = (8.0 +/- 0.5) x 10(-8)). Equilibrium constants and free energy changes for a series of reactions that could not be directly determined including homolysis reactions of the Rh(II)-Rh(II) dimer with water (D(2)O) and dihydrogen (D(2)) are derived from the directly measured equilibria. The rhodium hydride (Rh-D)(aq) and rhodium hydroxide (Rh-OD)(aq) bond dissociation free energies for (TSPP)Rh-D(D(2)O) and (TSPP)Rh-OD(D(2)O) in water are nearly equal (Rh-D = 60 +/- 3 kcal mol(-1), Rh-OD = 62 +/- 3 kcal mol(-1)). Free energy changes in aqueous media are reported for reactions that substitute hydroxide (OD(-)) (-11.9 +/- 0.1 kcal mol(-1)), hydride (D(-)) (-54.9 kcal mol(-1)), and (TSPP)Rh(I): (-7.3 +/- 0.1 kcal mol(-1)) for a water in (TSPP)Rh(III)(D(2)O)(2) and for the rhodium hydride (TSPP)Rh-D(D(2)O) to dissociate to produce a proton (9.7 +/- 0.1 kcal mol(-1)), a hydrogen atom (approximately 60 +/- 3 kcal mol(-1)), and a hydride (D(-)) (54.9 kcal mol(-1)) in water.
铑(III)四对磺酸苯基卟啉((TSPP)Rh(III))配合物的水溶液与氢气反应,在包括氢化铑、铑(I)和铑(II)二聚体配合物在内的六种铑物种之间产生平衡分布。该体系的平衡热力学研究(298K)通过直接测量五个平衡常数以及重水和水中氢气的解离能,建立了定量关系,这些关系定义了水溶液中物种分布作为氢气和氢离子浓度的函数。氢化配合物([(TSPP)Rh-D(D₂O)]⁻⁴)是一种弱酸(Kₐ(298K)=(8.0±0.5)×10⁻⁸)。一系列无法直接测定的反应的平衡常数和自由能变化,包括Rh(II)-Rh(II)二聚体与水(D₂O)和氢气(D₂)的均裂反应,是从直接测量的平衡中推导出来的。水中[(TSPP)Rh-D(D₂O)]⁻⁴和[(TSPP)Rh-OD(D₂O)]⁻⁴的氢化铑(Rh-D)(aq)和氢氧化铑(Rh-OD)(aq)键解离自由能几乎相等(Rh-D = 60±3 kcal mol⁻¹,Rh-OD = 62±3 kcal mol⁻¹)。报告了在水介质中,用氢氧根(OD⁻)(-11.9±0.1 kcal mol⁻¹)、氢化物(D⁻)(-54.9 kcal mol⁻¹)和(TSPP)Rh(I):(-7.3±0.1 kcal mol⁻¹)取代[(TSPP)Rh(III)(D₂O)₂]⁻³中的一个水以及氢化铑[(TSPP)Rh-D(D₂O)]⁻⁴解离产生一个质子(9.7±0.1 kcal mol⁻¹)、一个氢原子(约60±3 kcal mol⁻¹)和一个氢化物(D⁻)(54.9 kcal mol⁻¹)时的自由能变化。