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      Single-source-precursor synthesis of hafnium-containing ultrahigh-temperature ceramic nanocomposites (UHTC-NCs).

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          Abstract

          Amorphous SiHfBCN ceramics were prepared from a commercial polysilazane (HTT 1800, AZ-EM), which was modified upon reactions with Hf(NEt2)4 and BH3·SMe2, and subsequently cross-linked and pyrolyzed. The prepared materials were investigated with respect to their chemical and phase composition, by means of spectroscopy techniques (Fourier transform infrared (FTIR), Raman, magic-angle spinning nuclear magnetic resonance (MAS NMR)), as well as X-ray diffraction (XRD) and transmission electron microscopy (TEM). Annealing experiments of the SiHfBCN samples in an inert gas atmosphere (Ar, N2) at temperatures in the range of 1300-1700 °C showed the conversion of the amorphous materials into nanostructured UHTC-NCs. Depending on the annealing atmosphere, HfC/HfB2/SiC (annealing in argon) and HfN/Si3N4/SiBCN (annealing in nitrogen) nanocomposites were obtained. The results emphasize that the conversion of the single-phase SiHfBCN into UHTC-NCs is thermodynamically controlled, thus allowing for a knowledge-based preparative path toward nanostructured ultrahigh-temperature stable materials with adjusted compositions.

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          Author and article information

          Journal
          Inorg Chem
          Inorganic chemistry
          American Chemical Society (ACS)
          1520-510X
          0020-1669
          Oct 06 2014
          : 53
          : 19
          Affiliations
          [1 ] Technische Universität Darmstadt , Institut für Materialwissenschaft, Jovanka-Bontschits-Strasse 2, D-64287, Darmstadt, Germany.
          Article
          10.1021/ic501512p
          25231931
          6143b41c-81d2-4f43-9352-b60643e33e39
          History

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