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摘要: 介绍了碳化硅的一些背景资料,以及人工合成碳化硅宝石的基本原理,说明了碳化硅宝石的主要物理性质。并对碳化硅宝石作为金刚石的替代品,制作成的碳化硅压腔在完成超高压高温实验方面的优势和应用前景进行了评述。Abstract: History, synthesis method and main physical parameters of moissanite gemstone are described. Comparing to other synthetic gemstone (such as corundum, cubic zirconia), the moissanite gemstone is suitable for high-pressure anvil. The advantages and prospects of moissanite anvil cell for high-temperature and ultrahigh-pressure experiments studies are reviewed.
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Nassau K. Moissanite: A New Synthetic Gemstone Material [J]. The Journal of Gemmology, 1999, 26(7): 425-438. Amari S, Lewis R S, Anders E. Interstellar Grains in Meteorites: Isolation of SiC, Graphite, and Diamond; Size Distributions of SiC and Graphite [J]. Geochim Cosmochim Acta, 1994, 58: 459-470. Nassau K, McClure S F, Elen Shigley J E. Synthetic Moissanite: A New Diamond Substitute [J]. Gems Gemology, 1997, 33(4): 260-275. Xie H S. Introduction to the Physical Science in the Earth's Interior [M]. Beijing: Science Press, 1997. 25-41. (in Chinese) 谢鸿森. 地球深部物质科学导论 [M]. 北京: 科学出版社, 1997. 25-41. Xu J A, Mao H K. Moissanite: A Window for High-Pressure Experiments [J]. Science, 2000, 290: 783-785. -
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