McCauley Kevin M, Wilson Scott R, van der Donk Wilfred A
Department of Chemistry, University of Illinois at Urbana-Champaign, 600 South Mathews Avenue, Urbana, IL 61801, USA.
Inorg Chem. 2002 Nov 4;41(22):5844-8. doi: 10.1021/ic025714k.
Vitamin B(12) catalyzes the reductive dechlorination of perchloroethylene (PCE), a process for which vinylcobalamins have been proposed as intermediates. Previous model studies have shown that PCE and trichloroethlylene (TCE) react with cob(I)aloxime to form cis-1,2-dichlorovinylcobaloxime (1). This compound could be formed by nucleophilic vinylic substitution of cob(I)aloxime on TCE or its syn-addition to dichloroacetylene. To evaluate the latter possibility, dichloroacetylene was reacted in this study with cob(I)aloxime. The major product was not complex 1 but a novel cobalt complex, indicating that dichloroacetylene is not involved in the reductive dechorination of PCE catalyzed by cob(I)aloxime. An X-ray structure of the major product was obtained showing an unexpected tricyclic structure in which one of the carbons of dichloroacetylene is a ligand to the metal and the second carbon has formed a C-C bond to one of the oxime carbons. This arrangement connects the axial and equatorial ligands. The cathodic peak potential of this complex is significantly more negative than that of previously characterized chlorinated vinylcobaloximes. Cob(I)alamin also reacts with chloroacetylene to provide cis-chlorovinylcobalamin in analogy to cob(I)aloxime, but it does not provide dichlorinated vinylcobalamins in the reaction with dichloroacetylene. Hence, dichlorinated vinylcobalt complexes detected in the reductive dechlorination of PCE catalyzed by cobaloximes or vitamin B(12) are not derived from a dichloroacetylene intermediate.
维生素B12催化全氯乙烯(PCE)的还原脱氯反应,有人提出乙烯基钴胺素是该反应的中间体。先前的模型研究表明,PCE和三氯乙烯(TCE)与钴(I)肟反应形成顺式-1,2-二氯乙烯基钴肟(1)。该化合物可通过钴(I)肟在TCE上的亲核乙烯基取代反应或其与二氯乙炔的顺式加成反应形成。为了评估后一种可能性,本研究使二氯乙炔与钴(I)肟反应。主要产物不是配合物1,而是一种新型钴配合物,这表明二氯乙炔不参与钴(I)肟催化的PCE还原脱氯反应。获得了主要产物的X射线结构,显示出一种意想不到的三环结构,其中二氯乙炔的一个碳原子是金属的配体,第二个碳原子与一个肟碳原子形成了C-C键。这种排列连接了轴向和赤道配体。该配合物的阴极峰电位明显比先前表征的氯化乙烯基钴肟更负。钴(I)钴胺素也与氯乙炔反应,类似于钴(I)肟,生成顺式氯乙烯基钴胺素,但在与二氯乙炔的反应中不生成二氯化乙烯基钴胺素。因此,在钴肟或维生素B12催化的PCE还原脱氯反应中检测到的二氯化乙烯基钴配合物并非源自二氯乙炔中间体。