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首页> 外文期刊>Journal of Materials Science >Precursor routes to Group 4 metal borides, and metal boride/carbide and metal borideitride composites
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Precursor routes to Group 4 metal borides, and metal boride/carbide and metal borideitride composites

机译:前体路线到第4组金属硼化物,金属硼化物/碳化物和金属硼化物/氮化物复合物

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摘要

Precursor routes to Group 4 metal borides, as well as metal-boride/carbide and metal-borideitride composites, that employ metal-oxide/polymer and metal/polymer dispersions are described. The metal boride precursors were initially obtained by dispersing metal oxides in a decaborane-dicyanopentane polymer, but better results have now been achieved using a newly developed polyhexenyldecaborane polymer. Subsequent pyrolyses of the metal-oxide/polymer dispersions afford metal borides, including TiB2, ZrB2, and HfB2 in high chemical and ceramic yields. On the other hand, pyrolyses of hafnium/polyhexenyldecaborane dispersions provide an efficient route to hafnium-boride/carbide composites. Metal-borideitride composites, including TiB2/TiN and HfB2/HfN materials, are also readily obtained by pyrolyses of metal dispersions in the boron-nitrogen polymer polyborazylene, (B3N3H4) X . The high ceramic yields of the metal-borideitride systems (∼98%), enable their use for the controlled formation of shaped monolithic TiB2/TiN or HfB2/HfN materials by pyrolysis of pressed precursor green bodies.
机译:描述了使用金属氧化物/聚合物和金属/聚合物分散体的第4组金属硼化物以及金属硼化物/碳化物和金属硼化物/氮化物复合物的前体路线。金属硼化物前体最初是通过将金属氧化物分散在十硼烷-二氰基戊烷聚合物中获得的,但是现在使用新开发的聚己烯基十硼烷聚合物已经获得了更好的结果。随后的金属氧化物/聚合物分散体的热解可提供高化学和陶瓷产率的金属硼化物,包括TiB2 ,ZrB2 和HfB2 。另一方面,pyr /聚己烯基十硼烷分散体的热解为制备硼化ha /碳化物复合物提供了一条有效途径。金属硼化物/氮化物复合材料,包括TiB2 / TiN和HfB2 / HfN材料,也可以通过将金属分散体在硼氮聚合物聚硼三甲苯中(B3 N3 < / sub> H4 )X 。金属硼化物/氮化物系统的高陶瓷产率(约98%)使其可用于通过压制前体生坯的热解来控制形成整块的TiB2 / TiN或HfB2 / HfN整形材料身体。

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  • 来源
    《Journal of Materials Science 》 |2004年第19期| 6043-6049| 共7页
  • 作者

    K. Forsthoefel; L. G. Sneddon;

  • 作者单位

    Department of Chemistry University of Pennsylvania;

    Department of Chemistry University of Pennsylvania;

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  • 正文语种 eng
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