Sugimoto Hideki, Tarumizu Makoto, Tanaka Koji, Miyake Hiroyuki, Tsukube Hiroshi
Department of Chemistry, Graduate School of Science, Osaka City University, Sumiyoshi-ku, Osaka, 558-8585, Japan.
Dalton Trans. 2005 Nov 7(21):3558-65. doi: 10.1039/b503828f. Epub 2005 Sep 23.
A new set of molybdenum-(IV), -(V), and -(VI) compounds containing 3,6-dichloro-1,2-benzenedithiolate (bdtCl2) were isolated and characterised by crystallographic and other spectroscopic techniques as active site models of arsenite oxidase, one of the molybdoenzymes. MoO2 compounds were prepared in high yields by reaction of MoO2Cl2 with bdtCl2, related dithiolene and thiocatecholate in methanol at low temperature. The bdtCl2 ligand particularly stabilised the MoO compounds with oxidation numbers of +4 and +5 as well as the MoO2 compound with an oxidation number of +6. The compounds (Et4N)2[MoVIO2(bdtCl2)2], (Et4N)2[MoIVO(bdtCl2)2] and (Et4N)[MoVO(bdtCl2)2] were successfully isolated, whereas (Et3NH)2[MoO2(thiocatecholate)2] gradually decomposed in acetonitrile. A distorted octahedral structure similar to that of was suggested for the structure of the active site of the oxidised form of arsenite oxidase on the basis of a comparison of their bond distances and angles. The bond distances and angles around the molybdenum(IV) atom in were similar to those around the molybdenum(IV) centre in the reduced form of arsenite oxidase. The reversible / couple exhibited a more positive redox potential than common MoO dithiolene compounds. Underwent an irreversible proton-coupled reduction process to yield. An oxygen atom transfer reaction of with triphenylphosphine afforded and triphenylphosphine oxide, and proceeded in second order as v=-d/dt[MoO2]=k[MoO2][PPh3]. The structures and properties of the oxo-bridged dinuclear compound (Et4N)2[MoVIO2(bdtCl2)]2(micro-O), a dimer of bdtCl2 and were also characterised.
分离出了一组新的含3,6 - 二氯 - 1,2 - 苯二硫醇盐(bdtCl2)的钼(IV)、钼(V)和钼(VI)化合物,并通过晶体学和其他光谱技术对其进行了表征,将其作为钼酶之一的亚砷酸盐氧化酶的活性位点模型。通过在低温下使MoO2Cl2与bdtCl2、相关的二硫烯和硫代儿茶酚盐在甲醇中反应,高产率地制备了MoO2化合物。bdtCl2配体特别稳定了氧化态为 +4和 +5的MoO化合物以及氧化态为 +6的MoO2化合物。成功分离出了化合物(Et4N)2[MoVIO2(bdtCl2)2]、(Et4N)2[MoIVO(bdtCl2)2]和(Et4N)[MoVO(bdtCl2)2],而(Et3NH)2[MoO2(硫代儿茶酚盐)2]在乙腈中逐渐分解。基于它们的键长和键角比较,推测亚砷酸盐氧化酶氧化形式的活性位点结构与扭曲的八面体结构相似。[MoIVO(bdtCl)l2]中钼(IV)原子周围的键长和键角与亚砷酸盐氧化酶还原形式中钼(IV)中心周围的键长和键角相似。可逆的 / 电对表现出比常见的MoO二硫烯化合物更正的氧化还原电位。经历了不可逆的质子耦合还原过程生成。与三苯基膦的氧原子转移反应生成和三苯基膦氧化物,反应以二级反应进行,速率为v = -d/dt[MoO2] = k[MoO2][PPh3]。还对氧桥联双核化合物(Et4N)2[MoVIO2(bdtCl2)]2(μ - O)(bdtCl2的二聚体)的结构和性质进行了表征。