Granata Alessandro, Monzani Enrico, Casella Luigi
Dipartimento di Chimica Generale, Università di Pavia, Via Taramelli 12, 27100 Pavia, Italy.
J Biol Inorg Chem. 2004 Oct;9(7):903-13. doi: 10.1007/s00775-004-0595-3. Epub 2004 Sep 22.
The biomimetic catalytic oxidation of 3,5-di- tert-butylcatechol by the dicopper(II) complex of the ligand alpha,alpha'-bis(bis[1-(1'-methyl-2'-benzimidazolyl)methyl]amino)- m-xylene in the presence of dioxygen has been investigated as a function of temperature and pH in a mixed aqueous/organic solvent. The catalytic cycle occurs in two steps, the first step being faster than the second step. In the first step, one molecule of catechol is oxidized by the dicopper(II) complex, and the copper(II) centers are reduced. From the pH dependence, it is deduced that the active species of the process is the monohydroxo form of the dinuclear complex. In the second step, the second molecule of catechol is oxidized by the dicopper(I)-dioxygen complex formed upon oxygenation of the reduced complex. In both cases, catechol oxidation is an inner-sphere electron transfer process involving binding of the catechol to the active species. The binary catechol-dicopper(II) complex formed in the first step could be characterized at very low temperature (-90 degrees C), where substrate oxidation is blocked. On the contrary, the ternary complex of dicopper(I)-O(2)-catechol relevant to the second step does not accumulate in solution and could not be characterized, even at low temperature. The investigation of the biphasic kinetics of the catalytic reaction over a range of temperatures allowed the thermodynamic (Delta H degrees and Delta S degrees ) and activation parameters (Delta H( not equal) and Delta S( not equal)) connected with the key steps of the catecholase process to be obtained.
在混合水/有机溶剂中,研究了配体α,α'-双(双[1-(1'-甲基-2'-苯并咪唑基)甲基]氨基)-间二甲苯的二铜(II)配合物在氧气存在下对3,5-二叔丁基邻苯二酚的仿生催化氧化作用,该作用是温度和pH的函数。催化循环分两步进行,第一步比第二步快。在第一步中,一分子邻苯二酚被二铜(II)配合物氧化,铜(II)中心被还原。从pH依赖性推断,该过程的活性物种是双核配合物的单羟基形式。在第二步中,第二分子邻苯二酚被还原配合物氧化时形成的二铜(I)-双氧配合物氧化。在这两种情况下,邻苯二酚氧化都是一个内球电子转移过程,涉及邻苯二酚与活性物种的结合。第一步中形成的二元邻苯二酚-二铜(II)配合物可以在非常低的温度(-90℃)下进行表征,此时底物氧化被阻断。相反,与第二步相关的二铜(I)-O₂-邻苯二酚三元配合物即使在低温下也不会在溶液中积累,无法进行表征。在一系列温度范围内对催化反应的双相动力学进行研究,得到了与邻苯二酚酶过程关键步骤相关的热力学(ΔH°和ΔS°)和活化参数(ΔH(≠)和ΔS(≠))。