首页> 外文期刊>New Journal of Chemistry >Diiron hexacarbonyl complexes bearing naphthalene-1,8-dithiolate bridge moiety as mimics of the sub-unit of [FeFe]-hydrogenase: synthesis, characterisation and electrochemical investigations
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Diiron hexacarbonyl complexes bearing naphthalene-1,8-dithiolate bridge moiety as mimics of the sub-unit of [FeFe]-hydrogenase: synthesis, characterisation and electrochemical investigations

机译:带有萘-1,8-二硫酯桥部分的二铁六羰基配合物,类似于[FeFe]-氢化酶亚基的合成,表征和电化学研究

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摘要

Eight diiron hexacarbonyl complexes bearing a 1,8-dithionaphthalenyl bridging linkage as mimics of the diiron subunit of [FeFe]-hydrogenase are reported. Reaction of Fe-3(CO)(12) with naphtha[1,8-cd][1,2] dithiole-n-carbaldehyde (n = 2: 2a or 4: 2b) gave two complexes, [Fe-2(m-S)(2)R(CO)(6)] (-SRS-= n-formylnaphthalene-1,8-bis(thiolate), n = 2: 3a, 4: 3b), which were further used as precursors to prepare six other complexes by manipulating the formyl groups. Converting the corresponding formyl group into a hydroxymethyl group (CH2OH) led to complexes 4a and 4b. Their reactions with halobutanoyl chloride formed complexes 5a and 5b (halo group = Cl), and 6a and 6b (halo group = Br), respectively. Among the complexes, 3a, 3b, 4b, 5b, and 6a were crystallographically analysed. Electrochemical investigations into these complexes revealed that the formyl group exerts profound electronic influence on the electrochemistry, and thus catalysis of proton reduction, due to its involvement in the conjugation of the bridging linkage. DFT calculations indicate that the formyl group influences the electrochemistry and catalysis by significantly altering the composition of the LUMOs.
机译:报道了八个带有1,8-二硫萘基桥联键的二铁六羰基配合物,它们类似于[FeFe]-氢化酶的二铁亚基。 Fe-3(CO)(12)与石脑油[1,8-cd] [1,2]二硫醇-正甲醛(n = 2:2a或4:2b)反应得到两种络合物,[Fe-2( mS)(2)R(CO)(6)](-SRS- = n-甲酰基萘-1,8-双(硫醇盐),n = 2:3a,4:3b),将其进一步用作制备前体通过操纵甲酰基的其他六个配合物。将相应的甲酰基转化为羟甲基(CH 2 OH),得到络合物4a和4b。他们与卤代丁酰氯的反应分别形成了配合物5a和5b(卤代基团= Cl),以及6a和6b(卤代基团= Br)。在配合物中,对晶体3a,3b,4b,5b和6a进行了结晶分析。对这些配合物的电化学研究表明,甲酰基由于参与桥联键的结合,因此对电化学产生了深远的电子影响,从而催化了质子的还原。 DFT计算表明,甲酰基会通过显着改变LUMO的组成来影响电化学和催化作用。

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