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关于含有仿生 S4N 螯合物的模型 Fe(II)配合物的亚硝化的结构和机理信息。

Structural and mechanistic information on the nitrosation of model Fe(II) complexes containing a biomimetic S4N chelate.

机构信息

Inorganic Chemistry, Department of Chemistry and Pharmacy, University of Erlangen-Nürnberg, Egerlandstr. 1, 91058, Erlangen, Germany.

出版信息

Dalton Trans. 2011 Jan 7;40(1):287-94. doi: 10.1039/c0dt01038c. Epub 2010 Nov 18.

Abstract

In order to provide insight into the reaction pathways of nitrogen oxide redox species with [Fe-S] models that may parallel those existing in biology, the reactivity of the iron-sulfur species, {[Fe(II)(S(4)NEt(2)N)]}(2) (1) and [Fe(II)(CH(3)CN)(S(4)NEt(2)N)] (2), where (S(4)NEt(2)N)(2-) = 2,6-bis(2-mercaptophenylthiomethyl)-4-diethylaminopyridine(2-), towards NO(+) (nitrosation) has been studied mechanistically in acetonitrile and compared with the corresponding reactions with NO (nitrosylation). For the nitrosation of 1, the reaction takes place in two steps that correspond to the nitrosation of the mononuclear (2) and dinuclear (1) complexes, respectively. For the corresponding carbonyl complex [Fe(II)(CO)(S(4)NEt(2)N)] (3), the nitrosation reaction occurs in a single step. The relative reactivity of the iron-sulfur species is approximately (1)/(2)/(3) = 1/20/10. Activation parameters for the nitrosation of 1 (ΔH(#) = 27 ± 1 kJ mol(-1), ΔS(#) = -111 ± 2 J K(-1) mol(-1), and ΔV(#) = -19 ± 2 cm(3) mol(-1)), 2 (ΔH(#) = 46 ± 2 kJ mol(-1), ΔS(#) = -22 ± 7 J K(-1) mol(-1), and ΔV(#) = -9.7 ± 0.4 cm(3) mol(-1)) and 3 (ΔH(#) = 38 ± 1 kJ mol(-1), ΔS(#) = -44 ± 4 J K(-1) mol(-1), and ΔV(#) = -7.8 ± 0.3 cm(3) mol(-1)) were determined from variable temperature and pressure studies. The significantly negative ΔS(#) and ΔV(#) values found for the nitrosation reactions are consistent with an associative mechanism. A comparative study of the reactivity of the iron-sulfur species 1 to 3 towards NO(+) and NO is presented.

摘要

为了深入了解氮氧化物氧化还原物种与[Fe-S]模型的反应途径,这些模型可能与生物学中的途径相似,我们研究了铁硫物种{[Fe(II)(S(4)NEt(2)N)]}(2)(1)和[Fe(II)(CH(3)CN)(S(4)NEt(2)N)] (2)(其中(S(4)NEt(2)N)(2-) = 2,6-双(2-巯基苯甲基)-4-二乙氨基吡啶(2-))与NO(+)(亚硝化)的反应机理,并将其与相应的NO(硝化)反应进行了比较。对于 1 的亚硝化反应,反应分两步进行,分别对应单核(2)和双核(1)配合物的亚硝化。对于相应的羰基配合物[Fe(II)(CO)(S(4)NEt(2)N)] (3),亚硝化反应则在一步中进行。铁硫物种的相对反应活性约为(1)/(2)/(3) = 1/20/10。1 的亚硝化反应的活化参数为ΔH(#) = 27 ± 1 kJ mol(-1),ΔS(#) = -111 ± 2 J K(-1) mol(-1),ΔV(#) = -19 ± 2 cm(3) mol(-1)),2(ΔH(#) = 46 ± 2 kJ mol(-1),ΔS(#) = -22 ± 7 J K(-1) mol(-1),ΔV(#) = -9.7 ± 0.4 cm(3) mol(-1))和 3(ΔH(#) = 38 ± 1 kJ mol(-1),ΔS(#) = -44 ± 4 J K(-1) mol(-1),ΔV(#) = -7.8 ± 0.3 cm(3) mol(-1))通过变温变压研究确定。亚硝化反应中发现的显著负ΔS(#)和ΔV(#)值与协同机理一致。还介绍了铁硫物种 1 对 NO(+)和 NO 的反应活性的比较研究。

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