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首页> 外文期刊>International journal of hydrogen energy >Hydrogen production with a designed clathrochelate-based electrocatalytic materials: Synthesis, X-ray structure and redox-properties of the iron cage complexes with pendant (poly) aryl-terminated ribbed substituents
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Hydrogen production with a designed clathrochelate-based electrocatalytic materials: Synthesis, X-ray structure and redox-properties of the iron cage complexes with pendant (poly) aryl-terminated ribbed substituents

机译:设计的基于笼形螯合物的电催化材料制氢:具有(多)芳基侧基肋状取代基的铁笼络合物的合成,X射线结构和氧化还原性质

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Cage iron(II) complexes with one, two or six terminal (poly)aromatic group(s), designed for effective physical adsorption on the carbonaceous substrates, were prepared by nucleophilic substitution of their mono-, di- and hexachloroclathrochelate precursors with 3-arene-1(9)-yl-propane-1 thiolate anions. Their cyclic voltammograms contain the single Fe2-44+ reduction wave in the cathodic potential range and two oxidation waves in the anodic potential range, assigned to a metal-centered Fe2+/3+ process and to oxidation of their arylalkylsulfide groups, respectively. Iron(II) hexaphenanthrenylsulfide clathrochelate with six terminal polyaromatic groups was either immobilized or impregnated on the cathode of gas diffusion electrode and its electrochemical activity with regard to hydrogen evolution reaction (HER) was tested in a proton exchange membrane water electrolysis cell for hydrogen production. It was shown that effective immobilization of this (pre)catalyst on the surface of appropriate carbonaceous electrode materials can be successfully used for improving an efficiency of clathrochelate-based hydrogen-producing systems. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:具有一个,两个或六个末端(多)芳族基团的笼型铁(II)配合物,是通过将它们的单,二和六氯chloro螯合物前体用3-亲核取代而制备的,旨在有效地物理吸附在碳质底物上。芳烃-1(9)-丙基丙烷-1硫醇盐阴离子。它们的循环伏安图包含在阴极电位范围内的单个Fe2-44 +还原波和在阳极电位范围内的两个氧化波,分别分配给以金属为中心的Fe2 + / 3 +过程和其芳基烷基硫醚基团的氧化。将具有六个末端聚芳族基团的六价菲铁(II)六价铁螯合物固定或浸渍在气体扩散电极的阴极上,并在质子交换膜水电解池中测试了其对氢释放反应(HER)的电化学活性以生产氢。已经表明,将这种(预)催化剂有效地固定在适当的碳质电极材料的表面上可以成功地用于提高基于笼形螯合物的制氢系统的效率。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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