首页> 中文期刊> 《纳米研究:英文版》 >Extreme biomimetics: A carbonized 3D spongin scaffold as a novel support for nanostructured manganese oxide(IV) and its electrochemical applications

Extreme biomimetics: A carbonized 3D spongin scaffold as a novel support for nanostructured manganese oxide(IV) and its electrochemical applications

         

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  • 来源
    《纳米研究:英文版》 |2018年第8期|P.4199-4214|共16页
  • 作者单位

    [1]Institute of Chemical Technology and Engineering;

    Faculty of Chemical Technology;

    Poznan University of Technology;

    Poznan60965;

    Poland;

    [2]Institute of Chemistry and Technical Electrochemistry;

    Poznan University of Technology;

    Poznan 60965;

    Poland;

    [3]Institute of Materials Science;

    TU Bergakademie Freiberg;

    Freiberg 09599;

    Germany;

    [4]Max Planck Institute for Chemical Physics of Solids;

    Dresden 01187;

    Germany;

    [1]Institute of Chemical Technology and Engineering;

    Faculty of Chemical Technology;

    Poznan University of Technology;

    Poznan60965;

    Poland;

    [2]Institute of Chemistry and Technical Electrochemistry;

    Poznan University of Technology;

    Poznan 60965;

    Poland;

    [2]Institute of Chemistry and Technical Electrochemistry;

    Poznan University of Technology;

    Poznan 60965;

    Poland;

    [5]Institute of Experimental Physics;

    TU Bergakademie Freiberg;

    Freiberg 09599;

    Germany;

    [6]European X-Ray Free-Electron Laser Facility (XFEL) GmbH;

    Schenefeld 22869;

    Germany;

    [3]Institute of Materials Science;

    TU Bergakademie Freiberg;

    Freiberg 09599;

    Germany;

    [5]Institute of Experimental Physics;

    TU Bergakademie Freiberg;

    Freiberg 09599;

    Germany;

    [5]Institute of Experimental Physics;

    TU Bergakademie Freiberg;

    Freiberg 09599;

    Germany;

    [7]Institute of Semiconductors and Microsystems;

    Polymere Mikrosysteme;

    TU Dresden;

    Dresden 01062;

    Germany;

    [1]Institute of Chemical Technology and Engineering;

    Faculty of Chemical Technology;

    Poznan University of Technology;

    Poznan60965;

    Poland;

    [1]Institute of Chemical Technology and Engineering;

    Faculty of Chemical Technology;

    Poznan University of Technology;

    Poznan60965;

    Poland;

    [5]Institute of Experimental Physics;

    TU Bergakademie Freiberg;

    Freiberg 09599;

    Germany;

    [5]Institute of Experimental Physics;

    TU Bergakademie Freiberg;

    Freiberg 09599;

    Germany;

    [6]European X-Ray Free-Electron Laser Facility (XFEL) GmbH;

    Schenefeld 22869;

    Germany;

    [8]Saint-Petersburg National Research University of Information Technologies;

    Mechanics and Optics;

    ITMO University;

    St. Petersburg197101;

    Russia;

    [9]Institute of Ceramic;

    Glass and Constructions Materials;

    TU Bergakademie;

    Freiberg 09599;

    Germany;

    [9]Institute of Ceramic;

    Glass and Constructions Materials;

    TU Bergakademie;

    Freiberg 09599;

    Germany;

    [10]Institute of Electronics and Sensor Materials;

    TU. Be.rga.kad. em!eFre!berg;

    Freib. erg 09599;

    Germany;

    [11]Department of Biochemistry;

    Duke University MedicaI School;

    Durham;

    North Carolina 27708;

    uSA;

    [5]Institute of Experimental Physics;

    TU Bergakademie Freiberg;

    Freiberg 09599;

    Germany;

    [1]Institute of Chemical Technology and Engineering;

    Faculty of Chemical Technology;

    Poznan University of Technology;

    Poznan60965;

    Poland;

  • 原文格式 PDF
  • 正文语种 CHI
  • 中图分类 O614.711;
  • 关键词

    锰氧化物; 电气化学; 碳化; 3D; 脚手架; 生物材料; 应用; 化学性质;

    机译:锰氧化物;电气化学;碳化;3D;脚手架;生物材料;应用;化学性质;
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