Cheng Minglun, Wang Mei, Zheng Dehua, Sun Licheng
State Key Laboratory of Fine Chemicals, DUT-KTH Joint Education and Research Center on Molecular Devices, Dalian University of Technology, Dalian 116024, China.
Dalton Trans. 2016 Nov 28;45(44):17687-17696. doi: 10.1039/c6dt02953a. Epub 2016 Oct 18.
Three biomimetic models of the [FeFe]-hydrogenase active site, namely diiron dithiolates of [(μ-edt){Fe(CO)}{Fe(CO)(κ-PNP)}] (1, edt = ethane-1,2-dithiolate, PNP = PhPCHN(nPr)CHPPh), [(μ-bdtMe){Fe(CO)}{Fe(CO)(κ-PNP)}] (2, bdtMe = 4-methylbenzene-1,2-dithiolate), and [(μ-adtBn){Fe(CO)}{Fe(CO)(κ-PNP)}] (3, adtBn = N-benzyl-2-azapropane-1,3-dithiolate), were prepared and structurally characterized. These complexes feature the same PNP ligand but different S-to-S bridges. Influence of the S-to-S bridge on the electrochemical properties and chemical oxidation reactivity of 1-3 was studied by cyclic voltammetry and by in situ IR spectroscopy. The results reveal that the S-to-S bridge has a considerable effect on the oxidation reactivity of 1-3 and on the stability of in situ generated single-electron oxidized complexes, [1], [2], and [3]. The performances of [1] and [2] for H activation were explored in the presence of a mild chemical oxidant, while rapid decomposition of [3] thwarted the further study of this complex. Gratifyingly, 1 was found to be catalytically active, although in a low turnover number, for H oxidation in the presence of excess mild oxidant and a proton trapper under 1 atm H at room temperature.
制备并表征了三种[FeFe]-氢化酶活性位点的仿生模型,即[(μ-乙二硫醇盐){Fe(CO)}{Fe(CO)(κ-PNP)}](1,乙二硫醇盐 = 乙烷-1,2-二硫醇盐,PNP = PhPCHN(nPr)CHPPh)、[(μ-4-甲基苯-1,2-二硫醇盐){Fe(CO)}{Fe(CO)(κ-PNP)}](2,4-甲基苯-1,2-二硫醇盐)和[(μ-N-苄基-2-氮杂丙烷-1,3-二硫醇盐){Fe(CO)}{Fe(CO)(κ-PNP)}](3,N-苄基-2-氮杂丙烷-1,3-二硫醇盐)的二铁二硫醇配合物。这些配合物具有相同的PNP配体,但硫-硫桥不同。通过循环伏安法和原位红外光谱研究了硫-硫桥对1-3的电化学性质和化学氧化反应活性的影响。结果表明,硫-硫桥对1-3的氧化反应活性以及原位生成的单电子氧化配合物[1]、[2]和[3]的稳定性有相当大的影响。在温和化学氧化剂存在下探索了[1]和[2]对氢活化的性能,而[3]的快速分解阻碍了对该配合物的进一步研究。令人欣慰的是,发现在室温下1个大气压氢气存在下,在过量温和氧化剂和质子捕获剂存在时,1对氢氧化具有催化活性,尽管周转数较低。