Yu Ze, Wang Mei, Li Ping, Dong Weibing, Wang Fujun, Sun Licheng
State Key Laboratory of Fine Chemicals, DUT-KTH Joint Education and Research Center on Molecular Devices, Dalian University of Technology (DUT), Dalian, 116012, China.
Dalton Trans. 2008 May 14(18):2400-6. doi: 10.1039/b715990k. Epub 2008 Mar 7.
Four diiron dithiolate complexes containing ortho-acylamino-functionalized arenethiolato ligands, [(micro-S-2-RCONHC6H4)2Fe2(CO)6] (R = CH3, 1; CF3, 2; C6H5, 3; 4-FC6H4, 4), were synthesized and well characterized as biomimetic models of the Fe-Fe hydrogenase active site. The molecular structures of and 4 were determined by X-ray crystallography. The intra-ligand NHS hydrogen bonds were studied by the X-ray analysis and by the (1)H NMR spectroscopy. The contribution of the NHS hydrogen bonds to the reduction potentials of complexes was investigated by electrochemistry. The first reduction potentials of complexes exhibit large positive shifts, that is, 220-320 mV in comparison to that of the analogous complex [(micro-SPh)2Fe2(CO)6] and 370-470 mV to that of [(micro-pdt)2Fe2(CO)6] (pdt = propane-1,3-dithiolato). Complex is capable of electrocatalysing proton reduction of acetic acid at relatively low overpotential (ca. 0.2 V) in acetonitrile.
合成了四种含有邻酰氨基官能化芳硫醇配体的二铁二硫醇配合物,即[(μ-S-2-RCONHC6H4)2Fe2(CO)6](R = CH3,1;CF3,2;C6H5,3;4-FC6H4,4),并将其作为铁-铁氢化酶活性位点的仿生模型进行了充分表征。通过X射线晶体学确定了3和4的分子结构。通过X射线分析和1H NMR光谱研究了配体内NHS氢键。通过电化学研究了NHS氢键对配合物还原电位的贡献。配合物的首次还原电位呈现出较大的正向位移,即与类似配合物[(μ-SPh)2Fe2(CO)6]相比为220 - 320 mV,与[(μ-pdt)2Fe2(CO)6](pdt = 丙烷-1,3-二硫醇)相比为370 - 470 mV。配合物4能够在乙腈中以相对较低的过电位(约0.2 V)电催化乙酸的质子还原。