俄罗斯人工欧泊的特征及其变彩效应

Gemmological Characteristics and Play of Colour Effect of Artificial Opals from Russia

  • 摘要: 以俄罗斯氧化锆型和树脂型人工欧泊为研究对象,采用FTIR,EDXRF,ESEM和TG-DTG测试方法,重点对其宝石学特征、SiO2球体直径、球体空隙距离及粘结物成分与变彩效应之间的耦合关系进行了研究。研究表明,氧化锆型人工欧泊的化学成分、力学性质、结构与天然欧泊的基本相同,前者仅在粘结物中存在少量的氧化锆;树脂型人工欧泊的红外吸收光谱中,由丙烯酸脂类树脂ν(C=O)伸缩振动致红外吸收谱带出现在1 730 cm-1处,同时伴有δ(CH2)弯曲振动致1 432 cm-1红外吸收弱谱带。树脂型人工欧泊中,直径平均为215 nm的SiO2小球在三维空间内呈六方或立方紧密堆积,近等大的球体之间多被人造树脂粘结,并同时存在八面体和四面体空隙。SiO2小球的直径大小、空隙的类型及其距离直接控制欧泊的变彩效应。

     

    Abstract: The FTIR, EDXRF, ESEM and TG-DTG testing methods are employed in this paper to investigate gemmological characteristics, the coupling relationship between the diameter of the SiO2 sphere, the interspace of the spheres, the compositions of the cementing substance and play of colour effect in the artificial opals from Rusgems Company of Russia, including the zirconia-type and resin-type artificial opals. The results show that the zirconia-type artificial opal is similar to the natural opal in the chemical composition, mechanical character and structure, but only a few of zirconia present in the cementing substance. The IR absorption band at 1730 cm-1 is attributed to the ν(C=O) stretching vibration of acrylic resin, and the weak IR absorption band at 1432 cm-1 is attributed to the δ(CH2) curve vibration in the resin-type artificial opal. The small SiO2 spheres with the average diameter of 215 nm are accumulated closely as hexagon or cube in the three-dimensional space in the resin-type artificial opal. The interspaces of the spheres approaching equal in size are cemented by the artificial resins, where the octahedral and tetrahedral spacings are presented. The play of colour effect is controlled directly by the diameter size of the SiO2 sphere, the type and the interspace of the spacing.

     

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