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硼氢化反应合成聚硼硅氮烷和热压成型-热解制备SiBCN陶瓷 被引量:6

SYNTHESIS OF POLYBOROSILAZANE VIA HYDROBORATION AND WARM PRESSING-PYROLYSIS TO SiBCN CERAMICS
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摘要 对甲基乙烯基二氯硅烷(MeViSiCl2)进行氨解形成聚甲基乙烯基硅氮烷(PMVS),进而用二甲基硫醚硼烷(BH3-SMe2)和PMVS进行硼氢化反应,合成出SiBCN陶瓷的前驱体聚硼硅氮烷(polyborosilazane,PBSZ)。Fourier红外光谱分析表明:合成的PBSZ中有C-B-C和Si-N特征吸收峰,分别对应HC-B(CH)-CH和≡Si-NH-基团;11B和29Si的核磁共振分析产物中有BC3,SiN2C2,SiN3C和SiC3N等结构单元,这些光谱结果表明合成的产物为PBSZ。对PBSZ热压成型,在1000℃氩气中热解制备出SiBCN陶瓷体。PBSZ的热重分析表明:氩气中1300℃热解的陶瓷产率为52.6%。陶瓷局部致密,表明用前驱体热解法有望获得致密的SiBCN陶瓷体。 Methylvinyldichlorosilane (MeViSiCl2) was ammonolyzed to form polymethylvinylsilazane (PMVS),and then polyboro-silazane (PBSZ) precursor of SiBCN ceramic was synthesized by the reacting between PMVS and borane dimethylsulfide (BH3-SMe2). Fourier transform infrared spectral analysis of PBSZ shows characteristic absorption bands for C—B—C and Si-N bonds corresponding to HC—B(CH)—CH and ≡Si—NH—functional groups,respectively. Solid-state nuclear magnetic resonance (NMR) (11B-NMR,29Si-NMR) analyses show that the PBSZ has the chemical shifts for BC3,SiN2C2,SiN3C and SiC3N units,and it indicates that the synthesized product is PBSZ. The bulk SiBCN ceramics were prepared via pyrolyzing the PBSZ precursor hot-pressing at 1 000 ℃ in Argon. Thermogravimetric analysis of PBSZ shows that the yield of SiBCN ceramic prepared by pyrolyzing the PBSZ precursor at 1 300 ℃ in argon is 52.6%. The ceramic is locally dense,indicating that it is possible to form compact bulk ceramic by the warm-pressing and pyrolysis process.
出处 《硅酸盐学报》 EI CAS CSCD 北大核心 2010年第8期1533-1537,共5页 Journal of The Chinese Ceramic Society
基金 国家重大基础研究项目(2010CB934700) 国家杰出青年科学基金(50625207)资助项目
关键词 聚硼硅氮烷 硅硼碳氮陶瓷 前驱热解法 polyborosilazane silicon boron carbonitride ceramics precursor pyrolysis process
作者简介 孟凡星(1984-),男,硕士。 通讯作者:李亚利(1964-),男,教授、博士研究生导师。
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  • 1WEINMANN M, KAMPHOWE T W, SCHUHMACHER J, et al. Design of polymeric Si-B-C-N ceramic precursors for application in fiber-reinforced composite materials [J]. Chem Mater, 2000, 12: 2112- 2122.
  • 2SU K, REMSEN E E, ZANK G A, et al. Synthesis, eharaeterization,and ceramic conversion reactions of borazine-modificd hydridopolysilazanes: new polymeric precursors to SiNCB ceramic composites [J]. Chem Mater, 1993, 5: 547-556.
  • 3MULLER A, GERSTEL P, WEINMANN M, et al. Correlation of boron content and high temperature stability in Si-B-C-N ceramics [J]. J Eur Ceram Soc, 2000, 20: 2655-2659.
  • 4LEE J, BUTT D P, BANEY R H, et al. Synthesis and pyrolysis of novel polysilazane to SiBCN ceramic [J]. J Non-Cryst Solids, 2005, 351: 2995-3005.
  • 5唐云,王军,李效东,李文华,王浩,谢征芳.新型SiBNC陶瓷先驱体——聚硼硅氮烷的合成与表征[J].化学学报,2008,66(11):1371-1376. 被引量:13
  • 6RIEDEL R, KIENZLE A, DRESSLER W, et al. A siliconboron carbonitride ceramic stable to 2 000℃ [J]. Nature, 1996, 382: 796-798.
  • 7WEINMANN M, HAUG R, BILL J, et al. Boron-modified polysilylearbodi-imides as precursors for Si-B-C-N ceramics: synthesis, plastic-forming and high-temperature behavior [J]. Appl Organomet Chem, 1998, 12: 725-734.
  • 8RIEDEL R, RUWISCH L, AN L, et al. Amorphous siliconboron carbonitride ceramic with very high viscosity at temperatures above 1-500 ℃[J]. J Am Ceram Soc, 1998, 81: 3341-3344.
  • 9SCHMIDT W R, NARSAVAGE-HEALD D M, JONES D M, et al. Poly (borosilazane) precursors to ceramic nanocompositcs [J]. Chem Mater, 1999, 11: 1455-1464.
  • 10SCHUHMACHER J, BERGER F, WEINMANN M, et al. Solid-state NMR and FTIR studies of the preparation of Si-B-C-N ceramics from boron-modified polysilazanes [J]. Appl Organomet Chcm, 2001, 15: 809-819.

二级参考文献19

  • 1Kunz, K. P.; Sarin, V. K.; Davis, R. F.; Bryan, S. R. Mater. Sci. Eng. 1988, A105, 47.
  • 2Jansen, M.; Jaschke, B.; Jaschke, T. Struct. Bonding 2002, 101, 137.
  • 3Miele, P.; Bernard, S.; Cornu, D.; Toury, B. Soft Mater. 2006, 4, 249.
  • 4Wideman, T.; Cortez, E.; Remsen, E. E.; Zank, G. A.; Carroll, P. J.; Sneddon, L. G. Chem. Mater. 1997, 9, 2218.
  • 5Baldus, P.; Jansen, M.; Sporn, D. Science 1999, 285, 699.
  • 6Bernard, S.; Weinmann, M.; Geratel, P.; Miele, P.; Aldinger, F. J. Mater. Chem. 2005, 15, 289.
  • 7Haberecht, J.; Nesper, R.; Grutzmacher, H. Chem. Mater. 2005, 17, 2340.
  • 8Haberecht, J.; Krumeich, F.; Griitzmacher, H.; Nesper, R. Chem. Mater. 2004, 16, 418.
  • 9Jaschke, T.; Jansen, M. J. Mater. Chem. 2006, 16, 2792.
  • 10Shriver, D. F.; Drezdz, M. A. The Manipulation of Air-Sensitive Compounds, 2nd ed., Wiley, New York, 1986.

共引文献12

同被引文献86

  • 1王德海 江棂著.紫外光固化材料[M].北京:科学出版社,2001..
  • 2Stanley R L, Elizabeth J O, Michael C H, et al. Evaluation of ultra-high temperature ceramics for aeropropulsion use [J]. J Eur Ceram Soc,2002,22:2757.
  • 3Sneddon I. G, Mark J P, et al. Design, syntheses and appli- cations of chemical precursors to advanced ceramic materials in nanostructured forms [J]. J Eur Ceram Soc, 2005,25 : 91.
  • 4Paolo Colombo,et al. Polymer-derived ceramics: 40 years of research and innovation in advanced ceramics [J]. J Am Ce- ram Soc,2010,93(7) : 1805.
  • 5Hans j s, Peng J G, Olczewski J, et al. Phase equilibria of precursor-derived Si (B-)C-N ceramics[J]. Appl Organomet Chem, 2001,15 : 794.
  • 6Ralf Riedel, Andreas Kienzle, et al. A silicoboron carboni- tride ceramic stable to 2000℃[J]. Nature, 1996,382 : 796.
  • 7Kunz K P, Sarin V K, Davis R F, et al. Self diffusion of siticow30 and nitrogen-15 in a-Phase silicon nitride[J]. Ma- ter Sci Eng A,1988,105-106:47.
  • 8Su K, Remsen E E, Zank G A, et al. Synthesis,characteri zation, and ceramic conversion reactions of borazine-modi fled hydridopolysilazanes: New polymeric precursors to sili con nitride carbide boride (SiNCB) ceramic composites[J]. Chem Mater, 1993,5 (4) :547.
  • 9Quoc Dat Nghiem,et al. Polymer derived Si/C/B/N ceram- ics via hydroboration from borazine derivatives and trivinyl- eyelotrisilazane[J]. J Organomet Chem, 2003,688: 27.
  • 10Jong-Kyu Jeon, Quoc Dat Nghiem, et al. Olefin hydrobora- tion of borazine with vinylsilanes as precursors of Si-B-C-N ceramics[J]. J Organomet Chem, 2004,689: 2311.

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