CHEN Quan-li, QI Li-jian, ZHANG Yan. IR Absorption Spectrum Representation of Turquoise,Treated Turquoise and Imitation[J]. Journal of Gems & Gemmology, 2006, 8(1): 9-12.
Citation: CHEN Quan-li, QI Li-jian, ZHANG Yan. IR Absorption Spectrum Representation of Turquoise,Treated Turquoise and Imitation[J]. Journal of Gems & Gemmology, 2006, 8(1): 9-12.

IR Absorption Spectrum Representation of Turquoise,Treated Turquoise and Imitation

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  • Received Date: February 19, 2006
  • By using the infrared reflection spectrum analysis technique,the filled,pressed,imitated and natural turquoises on gem markets are investigated.The results show that the IR peaks at 2 934~2 924,2 863~2 854 cm-1 are resulted from the asymmetrical stretching vibration and the symmetrical stretching vibration of CH2and the strectching vibration of ν(C=O) peaks lie at 1 739~1 718 cm-1 in polymer of the treated and imitated turquoises.The imitated truquoises have the characteristic spectra of the asymmetrical stretching vibration and the symmetrical stretching vibration of CH2,and the vibration of ν(C=O) and characteristic absorption bands of themselves.But,they lack any typical peaks of stretching vibration of hydroxyl of natural turquoise(3 507,3 465 cm-1).These typical IR spectra play an important role in distinguishing the treated and imitated turquoises from the natural turquoise.
  • [1]
    刘丽军, 施光海.合成绿松石的鉴别[J].宝石和宝石学杂志, 2005, 7(3):36-39.
    [2]
    吴瑾光, 许振华, 李琼瑶, 等.近代傅里叶变换红外光谱技术及应用(下卷)[M].北京:科学技术文献出版社, 1994.141.
    [3]
    亓利剑, 袁心强, 曹姝.宝石的红外反射光谱表征及其应用[J].宝石和宝石学杂志, 2005, 7(4):21-25.
    [4]
    Farmer V C.矿物的红外光谱[M].应育浦, 汪寿松, 李春庚, 等译.北京:科学出版社, 1982.304.
    [5]
    闻骆, 梁婉雪, 章正刚, 等.矿物红外吸收光谱学[M].重庆:重庆大学出版社, 1988.
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