立方氮化硅作为氮化硅的第三种物相,具有比α-Si3N4、β-Si3N4高的体积模量及硬度,是继金刚石与立方氮化硼之后的第三种超硬材料.从静高压合成与动高压合成两个方面综述了立方氮化硅粉体的合成研究现状,详细阐述了立方氮化硅的晶体结构及性能,介绍了立方氮化硅块体材料的研究进展,并展望了立方氮化硅的应用及研究前景.
参考文献
[1] | Liu A Y;Cohen M L .Prediction of new low compressibility solids[J].Science,1989,245:841. |
[2] | Zerr A;Mliehe M;Serghiou G et al.Synthesis of cubic silicon nitride[J].Nature,1999,400:340. |
[3] | Brook R J .Superhard ceramics[J].Nature,1999,400:312. |
[4] | Mo Shangdi;Ouyang Lizhi;Ching W Y .Interesting physical of the new spinel phase of Si3N4 and C3N4[J].Physical Review Letters,1999,83(24):5046. |
[5] | Jiang JZ.;Frost DJ.;Stahl K.;Lindelov H.;Kragh F. .Hardness and thermal stability of cubic silicon nitride[J].Journal of Physics. Condensed Matter,2001(22):L515-L520. |
[6] | Andreas Zerr;Markus Kempf;Marcus Schwarz .Elastic Moduli and Hardness of Cubic Silicon Nitride[J].Journal of the American Ceramic Society,2002(1):86-90. |
[7] | Jiang JZ.;Berg RW.;Frost DJ.;Zhou TJ.;Shi PX.;Stahl K. .Structural characterization of cubic silicon nitride[J].EPL,2000(1):62-67. |
[8] | Schwarz M.;Zerr A.;Kroke E.;Poe BT.;Fuess H.;Riedel R.;Miehe G. .Spinel-Si3N4: Multi-anvil press synthesis and structural refinement[J].Advanced Materials,2000(12):883-887. |
[9] | T. Sekine;Hongliang He;T. Kobayashi .Shock-induced transformation of β-Si_(3)N_(4) to a high-pressure cubic-spinel phase[J].Applied physics letters,2000(25):3706-3708. |
[10] | He Hongliang;Sekine T;Kobayashi T et al.Shock-induced phase transformation of β-Si3N4 to γ-Si3N4[J].Physical Review B:Condensed Matter,2000,62(17):11412. |
[11] | A.S.Yunoshev .Shock-Wave Synthesis of Cubic Silicon Nitride[J].Combustion, Explosion, and Shock Waves,2004(3):370-373. |
[12] | 刘雨生,姚怀,张福平,贺红亮,唐敬友.立方氮化硅的冲击波合成实验研究[J].无机材料学报,2007(01):159-162. |
[13] | Ming Zhang;Hongliang He;F. F. Xu .High-resolution transmission electron microscopy of cubic Si_(3)N_(4)[J].Journal of Applied Physics,2000(5):3070-3072. |
[14] | Kroll P.;Dronskowski R.;Eck B. .First-principles studies of extended nitride materials[J].Advanced Materials,2000(4):307-310. |
[15] | Soignard E.;Dong JJ.;Sankey OF.;McMillan PF.;Somayazulu M. .High pressure-high temperature synthesis and elasticity of the cubic nitride spinel gamma-Si3N4[J].Journal of Physics. Condensed Matter,2001(4):557-563. |
[16] | Critical pressure for weakening of size-induced stiffness in spinel-structure Si_(3)N_(4) nanocrystals[J].Applied physics letters,2003(15):3174-3176. |
[17] | T. Sekine;T. Mitsuhashi .High-temperature metastability of cubic spinel Si_(3)N_(4)[J].Applied physics letters,2001(17):2719-2721. |
[18] | 姚怀,唐敬友,刘雨生,刘党库,唐翠霞,贺红亮,杨世源.立方氮化硅的合成与提纯[J].硅酸盐学报,2007(01):31-34. |
[19] | Hintzen H T;Hendrix M R M M;Wondergem H et al.Thermal expansion of cubic Si3N4 with the spinel structure[J].Journal of Alloys and Compounds,2003,351:40. |
[20] | Phonon spectrum and thermal properties of cubic Si_(3)N_(4) from first-principles calculations[J].Journal of Applied Physics,2003(9):5175-5180. |
[21] | Fumiyasu Oba;Kazuyoshi Tatsumi;Hirohiko Adachi;Isao Tanaka .n- and p-type dopants for cubic silicon nitride[J].Applied physics letters,2001(11):1577-1579. |
[22] | Isao Tanaka;T. Mizoguchi;T. Sekine;Hongliang He;K. Kimoto;T. Kobayashi;Shang-Di Mo;W. Y. Ching .Electron energy loss near-edge structures of cubic Si_(3)N_(4)[J].Applied physics letters,2001(15):2134-2136. |
[23] | Yunoshev A S;Silvestrov V V;Kalinin A A et al.Shockwave synthesis and HPHT sintering of cubic silicon nitride[J].AIP Conference Proceedings,2006,845:1173. |
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