Borges Simone da S. S., Davanzo Celso U., Castellano Eduardo E., Z-Schpector Julio, Silva Sebastião C., Franco Douglas W.
Instituto de Química de São Carlos, Universidade de São Paulo, Caixa Postal 780, 13560-970, São Carlos-SP, Brazil.
Inorg Chem. 1998 Jun 1;37(11):2670-2677. doi: 10.1021/ic951563s.
A new route was developed for preparing a series of trans nitrosyl complexes of general formula trans-Ru(NH(3))(4)L(NO)(3), where L = imidazole, L-histidine, pyridine, or nicotinamide. The complexes have been characterized by elemental analysis, molar conductance measurements, UV-visible, infrared, proton nuclear magnetic, and electron paramagnetic resonance spectroscopies, and electrochemical techniques. The compounds possess relatively high nu(NO) stretching frequencies indicating that a high degree of positive charge resides on the coordinated nitrosyl group. The nitrosyl complexes react with OH(-) according to the equation trans-Ru(NH(3))(4)L(NO) + 2OH(-) right arrow over left arrow trans-Ru(NH(3))(4)L(NO(2)) + H(2)O, with a K(eq) (at 25.0 degrees C in 1.0 mol/L NaCl) of 2.2 x 10(5), 5.9 x 10(7), 9.7 x 10(10), and 4.6 x 10(13) L(2) mol(-)(2) for the py, nic, imN, and L-hist complexes, respectively. Only one redox process attributed to the reaction Ru(II)(NH(3))(4)L(NO(+)) + e(-) right arrow over left arrow trans-Ru(II)(NH(3))(4)L(NO(0)) was observed in the range -0.45 to 1.20 V for all the nitrosyl complexes. Linear correlations are observed in plots of nu(NO) versus E(1/2) and of E(1/2) versus summation operatorE(L) showing that the oxidizing strength of the coordinated NO increases with increase in L pi-acidity. The crystal structure analysis of trans-Ru(NH(3))(4)nicNO(SiF(6))(3) shows that the mean Ru-N-O angle is very close to 180 degrees (177 +/- 1 degrees ) and the mean N-O distance is 1.17 +/- 0.02 Å, thus confirming the presence of the Ru(II)-NO(+) moiety in the nitrosyl complexes studied.
开发了一种新路线来制备一系列通式为反式-Ru(NH₃)₄L(NO)₃的反式亚硝酰配合物,其中L = 咪唑、L-组氨酸、吡啶或烟酰胺。这些配合物已通过元素分析、摩尔电导率测量、紫外-可见光谱、红外光谱、质子核磁共振光谱、电子顺磁共振光谱以及电化学技术进行了表征。这些化合物具有相对较高的ν(NO)伸缩频率,表明配位亚硝酰基团上存在高度正电荷。亚硝酰配合物与OH⁻反应,反应式为反式-[Ru(NH₃)₄L(NO)]³⁺ + 2OH⁻ ⇌ 反式-[Ru(NH₃)₄L(NO₂)]⁺ + H₂O,在25.0℃的1.0 mol/L NaCl溶液中,吡啶、烟酰胺、咪唑氮和L-组氨酸配合物的K(eq)分别为2.2×10⁵、5.9×10⁷、9.7×10¹⁰和4.6×10¹³ L² mol⁻²。对于所有亚硝酰配合物,在-0.45至1.20 V范围内仅观察到一个归因于反应[Ru(II)(NH₃)₄L(NO⁺)]³⁺ + e⁻ ⇌ 反式-[Ru(II)(NH₃)₄L(NO⁰)]²⁺的氧化还原过程。在ν(NO)对E(1/2)以及E(1/2)对∑E(L)的图中观察到线性相关性,表明配位NO的氧化强度随L π-酸度的增加而增加。反式-[Ru(NH₃)₄nicNO]₂(SiF₆)₃的晶体结构分析表明,平均Ru-N-O角非常接近180°(177±1°),平均N-O距离为1.17±0.02 Å,从而证实了所研究的亚硝酰配合物中存在Ru(II)-NO⁺部分。