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Cu-0-loaded SBA-15@ZnO with improved electrical properties and affinity towards hydrogen

机译:负载Cu-0的SBA-15 @ ZnO具有改善的电性能和对氢的亲和力

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摘要

A core-shell material was prepared using SBA-15 crystallites as cores for the growth of a ZnO shell, followed by Cu-0 dispersion. The resulting Cu/SBA-15@ZnO nanostructure displayed higher specific surface area (SSA) and higher number of smaller pores as compared to the starting materials. Dispersion of fine Cu(0)NPs induced a compaction of the host matrice and a marked decay of the hydrophilic character, explained in terms of the involvement of terminal hydroxyl groups in competitive -HO:Cu interaction at the expense of H-bridges with water. Heating at 400-450 degrees C seems to trigger ZnO dehydroxylation with possible self-polycondensation and/or the formation of Si-O-Zn bridges. This is an additional explanation of the significant SSA increase and decrease in the average pore diameter. Both ZnO and (CuNP)-N-0 incorporation induced shifts in the UV-vis absorption band towards higher wavelengths, indicating a decrease in the optical band gap energy and an improvement of the conductance properties. As compared to ZnO, Cu(0)NPs produced stronger improvement of the conductance, which was found to increase with higher frequencies. Cu/SBA-15@ZnO also displayed higher affinity towards hydrogen as compared to SBA-15@ZnO and SBA-15 at ambient conditions. These outstanding properties combined to an appreciable thermal stability are worth to be prone to deeper investigations, because they can open promising prospects for Cu/SBA-15@ZnO as sensor, electrode material, electrocatalyst and/or hydrogen capture matrice. (C) 2017 Elsevier B.V. All rights reserved.
机译:使用SBA-15晶体作为ZnO壳生长的核,然后进行Cu-0分散,制备了核壳材料。与起始材料相比,所得的Cu / SBA-15 @ ZnO纳米结构显示出更高的比表面积(SSA)和更高数量的较小孔。精细的Cu(0)NPs的分散引起主体基质的致密化和亲水性的显着下降,这是根据末端羟基参与竞争性-HO:Cu相互作用而以H桥与水为代价来解释的。在400-450摄氏度下加热似乎会触发ZnO脱羟基,并可能发生自缩聚反应和/或形成Si-O-Zn桥。这是对平均孔径显着增加和减小的SSA的另一种解释。 ZnO和(CuNP)-N-0的引入均会引起UV-vis吸收带向更高波长的移动,这表明光学带隙能量的降低和电导特性的提高。与ZnO相比,Cu(0)NPs产生了更强的电导率改善,电导率随频率增加而增加。在环境条件下,与SBA-15 @ ZnO和SBA-15相比,Cu / SBA-15 @ ZnO对氢也显示出更高的亲和力。这些出色的性能与可观的热稳定性相结合,值得进行更深入的研究,因为它们可以为将Cu / SBA-15 @ ZnO用作传感器,电极材料,电催化剂和/或氢捕获基质打开广阔的前景。 (C)2017 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Applied Surface Science》 |2017年第may15期|146-153|共8页
  • 作者单位

    Normandie Univ, COBRA, UMR6014, 55 Rue St Germain, F-27000 Evreux, France|Univ Rouen, CNRS, FR3038, INSA Rouen, 55 Rue St Germain, F-27000 Evreux, France|Univ Gabes, Res Unit Catalysis & Mat Environm & Proc, Fac Sci, Zrig Eddakhlania, Tunisia;

    Normandie Univ, COBRA, UMR6014, 55 Rue St Germain, F-27000 Evreux, France|Univ Rouen, CNRS, FR3038, INSA Rouen, 55 Rue St Germain, F-27000 Evreux, France;

    Univ Sci & Technol Mohamed Boudiaf, Dept Mat Engn, Fac Chem, BP 1505, El Mnaouer, Oran, Algeria;

    Univ Gabes, Dept Chem, Fac Sci, Zrig Eddakhlania, Tunisia;

    Normandie Univ, COBRA, UMR6014, 55 Rue St Germain, F-27000 Evreux, France|Univ Rouen, CNRS, FR3038, INSA Rouen, 55 Rue St Germain, F-27000 Evreux, France;

    Normandie Univ, COBRA, UMR6014, 55 Rue St Germain, F-27000 Evreux, France|Univ Rouen, CNRS, FR3038, INSA Rouen, 55 Rue St Germain, F-27000 Evreux, France;

    Univ Quebec, Dept Chem, Nanoqam, Montreal, PQ H3C 3P8, Canada;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SBA-15; Surface properties; Band-gap; Hydrogen capture; Cu(0)NPs; ZnO;

    机译:SBA-15;表面性能;带隙;氢俘获;Cu(0)NPs;ZnO;

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