Mills Matthew R, Weitz Andrew C, Zhang David Z, Hendrich Michael P, Ryabov Alexander D, Collins Terrence J
Department of Chemistry, Carnegie Mellon University , 4400 Fifth Avenue, Pittsburgh, Pennsylvania 15213, United States.
Inorg Chem. 2016 Dec 5;55(23):12263-12269. doi: 10.1021/acs.inorgchem.6b01988. Epub 2016 Nov 11.
Studies of the new tetra-amido macrocyclic ligand (TAML) activator [Fe{(MeCNCOCMeNCO)CMe}OH] (4) in water in the pH range of 2-13 suggest its pseudo-octahedral geometry with two nonequivalent axial HO ligands and revealed (i) the anticipated basic drift of the first pK of water to 11.38 due to four electron-donating methyl groups alongside (ii) its counterintuitive enhanced resistance to acid-induced iron(III) ejection from the macrocycle. The catalytic activity of 4 in the oxidation of Orange II (S) by HO in the pH range of 7-12 is significantly lower than that of previously reported TAML activators, though it follows the common rate law (v/[Fe] = kk[HO][S]/(k[HO] + k[S]) and typical pH profiles for k and k. At pH 7 and 25 °C the rate constants k and k equal 0.63 ± 0.02 and 1.19 ± 0.03 M s, respectively. With these new values for pK, k and k establishing new high and low limits, respectively, the rate constants k and k were correlated with pK values of all TAML activators. The relations log k = log k + α × pK were established with log k = 13 ± 2 and 20 ± 4 and α = -1.1 ± 0.2 and -1.8 ± 0.4 for k and k, respectively. Thus, the reactivity of TAML activators across four generations of catalysts is predictable through their pK values.
对新型四酰胺大环配体(TAML)活化剂[Fe{(MeCNCOCMeNCO)CMe}OH](4)在pH值为2至13的水中进行的研究表明,其具有伪八面体几何结构,带有两个不等价的轴向羟基配体,并揭示出:(i)由于四个供电子甲基的存在,水的首个pK值出现预期的碱性漂移,达到11.38;(ii)其对酸诱导的大环中铁(III)脱出具有违反直觉的增强抗性。在pH值为7至12的范围内,4对HO氧化橙黄II(S)的催化活性显著低于先前报道的TAML活化剂,不过它遵循常见的速率定律(v/[Fe] = kk[HO][S]/(k[HO] + k[S])以及k和k的典型pH曲线。在pH值为7且温度为25℃时,速率常数k和k分别等于0.63±0.02和1.19±0.03 M⁻¹ s⁻¹。利用这些分别建立了新的高限和低限的pK、k和k的新值,将速率常数k和k与所有TAML活化剂的pK值进行了关联。分别针对k和k建立了log k = log k + α × pK的关系,其中log k = 13±2和20±4,α = -1.1±0.2和-1.8±0.4。因此,四代催化剂中TAML活化剂的反应活性可通过其pK值进行预测。