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Gem-Quality Synthetic Diamonds Grown by a Chemical Vapor Deposition (CVD) Method

机译:通过化学气相沉积(CVD)方法生长的宝石级合成钻石

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摘要

Brown-to-gray and near-colorless single-crystal type IIa synthetic diamonds grown using a chemical vapor deposition (CVD) technique by Apollo Diamond Inc. have gemological properties that are distinct from those of both natural diamonds and HPHT-grown synthetic gem diamonds. The tabular crystals typically range up to 1 ct or more and a few millimeters thick, and consist of an overgrowth on a natural or synthetic diamond substrate. Faceted CVD synthetic diamond usually cannot be separated from natural diamond with standard gemological techniques; although when portions of the substrate are still present, an experienced gemologist may be able to recognize differences in luminescence or color between the overgrowth and substrate. In all cases, however, the CVD synthetic diamonds examined to date could be identified in a gemological laboratory by the combination of a strong orangy red fluorescence seen with the De Beers DiamondView deep ultraviolet imaging system, a characteristic anomalous birefringence (strain) pattern, and distinctive features in their infrared absorption spectra (e.g., at 3123 cm~(-1)) and photoluminescence spectra (strong 575 and 637 nm emissions, a doublet at 596 and 597 nm, and a line at 737 nm).
机译:使用Apollo Diamond Inc.的化学气相沉积(CVD)技术生长的棕灰色和近乎无色的IIa型合成钻石,其宝石学特性与天然钻石和HPHT生长的人造钻石不同。平板状晶体的范围通常最大为1 ct或更大,厚度为几毫米,并且由天然或合成金刚石基底上的过度生长组成。通常无法使用标准的宝石学技术将多面CVD合成钻石与天然钻石分开;尽管当部分衬底仍然存在时,有经验的宝石学家也许能够识别出过度生长和衬底之间的发光或颜色差异。然而,在所有情况下,可以通过在宝石实验室中结合戴比尔斯DiamondView深紫外成像系统看到的强烈的橘红色荧光,特征性的异常双折射(应变)图样,在宝石学实验室中鉴定出CVD合成钻石。其红外吸收光谱(例如,在3123 cm〜(-1)处)和光致发光光谱(在575和637 nm处有较强的发射,在596和597 nm处有双峰,在737 nm处有谱线)具有鲜明的特征。

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