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首页> 外文期刊>Organometallics >Preparation and Characterization of Homologous Diiron Dithiolato, Diselenato, and Ditellurato Complexes: [FeFe]-Hydrogenase Models
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Preparation and Characterization of Homologous Diiron Dithiolato, Diselenato, and Ditellurato Complexes: [FeFe]-Hydrogenase Models

机译:同源二铁二硫代,二硒代和双呋喃配合物的制备与表征:[FeFe]-加氢酶模型

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摘要

In order to elucidate the influence of the bridging chalcogen atoms in hydrogenase model complexes, din-on dithiolato, diselenolato, and ditellurolato complexes have been prepared and characterized. Treatment of Fe-3(CO)(12) with 3,3-bis(thiocyanatomethyl)oxetane (1) or a mixture of 2-oxa-6,7-dithiaspiro[3.4]octane (2a)and 2-oxa-6,7,8-trithiaspiro[3.5]nonane (2b) in toluene at reflux afforded the model compound Fe-2(mu-S2C5H8O)(CO)(6) (3). The analogous diselenolato and ditellurolato complexes, Fe-2(mu-Se2C5H8O)(CO)(6) (4) and Fe-2(mu-Te2C5H8O)(CO)(6) (5), were obtained from the reaction of Fe-3(CO)(12) with 2-oxa-6,7-diselenaspiro[3.4]octane (6) and 2-oxa-6,7-ditelluraspiro-[3.4]octane (7), respectively. Compounds 3-5 were characterized by spectroscopic techniques (NMR, IR, photoelectron spectroscopy), mass spectrometry, single-crystal X-ray analysis, kind computational modeling. The electrochemical properties for the new compounds have been studied to assess their ability to catalyze electrochemical reduction of protons to give dihydrogen, and the catalytic rate is found to decrease on going from the sulfur to selenium to tellurium compounds. In the series 3-5 the reorganization energy on going to the corresponding cation decreased from 3 to 4 to 5. Spectroscopic and computational analysis suggests that the increasing size of the chalcogen atoms from S to Se to Te increases the Fe-Fe distance and decreases the ability of the complex to form the structure with a rotated Fe(CO)(3) group that has a bridging carbonyl ligand and a vacant coordination site for protonation. This effect is mirrored on reduction of 3-5 in that the rotated structure with a bridging carbonyl, which creates a vacant coordination site for protonation, is disfavored on going from the S to Se to Te complexes.
机译:为了阐明桥接硫族原子在氢化酶模型复合物中的影响,已经制备并表征了din-on二硫代巯基,二硒代和二碲代脲的配合物。用3,3-双(硫氰酸根甲基)氧杂环丁烷(1)或2-氧杂-6,7-二硫杂螺[3.4]辛烷(2a)和2-氧杂-6的混合物处理Fe-3(CO)(12)甲苯中的1,7,8-三硫杂螺[3.5]壬烷(2b)回流得到模型化合物Fe-2(mu-S2C5H8O)(CO)(6)(3)。从Fe的反应中获得了类似的二硒代和二硒代铁络合物Fe-2(mu-Se2C5H8O)(CO)(6)(4)和Fe-2(mu-Te2C5H8O)(CO)(6)(5) -3(CO)(12)分别带有2-oxa-6,7-diselenaspiro [3.4]辛烷(6)和2-oxa-6,7-ditelluraspiro- [3.4]辛烷(7)。通过光谱技术(NMR,IR,光电子能谱),质谱,单晶X射线分析,种类计算模型来表征化合物3-5。已经研究了新化合物的电化学性质,以评估其催化质子电化学还原生成二氢的能力,发现从硫到硒再到碲化合物,其催化速率降低。在3-5系列中,到达相应阳离子的重组能从3降低到4至5。光谱和计算分析表明,硫族元素原子从S到Se到Te的增大尺寸增加了Fe-Fe距离并减小了配合物形成具有旋转的Fe(CO)(3)基团的结构的能力,该基团具有桥接的羰基配体和一个空的质子化配位位点。这种效果反映在3-5的还原上,因为从S到Se到Te络合物不利于带有桥接羰基的旋转结构,该结构为质子生成了空的配位位点。

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