首页> 外文期刊>The American mineralogist >Optical absorption, luminescence, and electron paramagnetic resonance (EPR) spectroscopy of crystalline to metamict zircon: Evidence for formation of uranyl, manganese, and other optically active centers
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Optical absorption, luminescence, and electron paramagnetic resonance (EPR) spectroscopy of crystalline to metamict zircon: Evidence for formation of uranyl, manganese, and other optically active centers

机译:晶体到准锆石的光学吸收,发光和电子顺磁共振(EPR)光谱:形成铀酰,锰和其他旋光中心的证据

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摘要

A spectroscopic study on seven natural zircon crystals representing varying coloration and degree of short-range order has been conducted using Raman, optical absorption (OA), time-resolved laserinduced luminescence (TRL), and electron paramagnetic resonance (EPR) spectroscopy. There is a systematic increase in the line width of the central Gd3+ transition in the EPR spectra with decreasing short-range order as defined by Raman spectroscopy. In the luminescence spectra, the broad-band yellow photoluminescence centered at about 560 nm is restricted to samples with a high degree of short-range order. In contrast, photoluminescence related to trivalent rare earth elements was detected in zircon with both intermediate and high degrees of short-range order, but not in one heterogeneous, intermediate to highly metamict sample. Furthermore, short-lived greenish luminescence, typical of uranyl ions, could be detected in the luminescence spectra of partly and strongly metamict zircon. Reabsorption lines related to the presence of tetravalent U were found in luminescence spectra of both well-ordered and metamict samples. These observations give evidence for the occurrence of hexavalent U, besides the tetra- and pentavalent forms in natural zircon. It appears that pentavalent U initially present in crystalline zircon converted to tetra- and hexavalent U in highly metamict samples. For a well-ordered green zircon crystal from Caldas Minas, Minas Gerais (Brazil), spectra of Mn2+ (or Mn4+) were detected by both EPR and luminescence spectroscopy, demonstrating that Mn centers may be present in this mineral. Potential color centers are discussed. Green coloration of natural zircon cannot be assigned exclusively to the presence of U4+ as suggested previously. Furthermore, no significant influence of the Nb4+ center on zircon coloration, including reddish color, was found. Yellow coloration may be related to the absorption due to charge-transfer bands of Pr4+.
机译:已经使用拉曼光谱,光学吸收(OA),时间分辨激光诱导发光(TRL)和电子顺磁共振(EPR)光谱对代表不同颜色和短程有序度的七个天然锆石晶体进行了光谱学研究。 EPR光谱中中心Gd3 +跃迁的线宽随着拉曼光谱法的定义逐渐减小,并且有逐渐减小的线宽。在发光光谱中,以约560nm为中心的宽带黄色光致发光限于具有短程有序度的样品。相比之下,在锆石中检测到与三价稀土元素有关的光致发光,同时具有中度和高度的短程有序,但没有在一种非均质的,高度成mic的样品中发现。此外,在部分和强烈亚取代的锆石的发光光谱中,可以检测到铀酰离子所特有的短寿命绿色发光。在有序样品和亚置换样品的发光光谱中都发现了与四价U的存在有关的重吸收线。这些观察结果提供了六价铀的存在的证据,除了天然锆石中的四价和五价形式。似乎最初存在于晶体锆石中的五价U在高度亚金属样品中转化为四价和六价U。对于来自Minas Gerais(巴西)的Caldas Minas的有序绿色锆石晶体,通过EPR和发光光谱检测到了Mn2 +(或Mn4 +)的光谱,表明该矿物中可能存在Mn中心。讨论了潜在的色心。天然锆石的绿色不能像先前建议的那样专门分配给U4 +。此外,未发现Nb4 +中心对锆石着色(包括微红色)的显着影响。由于Pr4 +的电荷转移带,黄色可能与吸收有关。

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