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Crystal field spectroscopy of Cr3+ in glasses: Compositional dependence and thermal site expansion

机译:玻璃中Cr3 +的晶体场光谱:成分依赖性和热位扩展

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摘要

Optical absorption (=crystal field) spectra of Cr3+ in silicate glasses have been investigated as a function of chemical composition and temperature. In a large range of glass compositions, most spectra show a variation of Crystal Field Stabilization Energy (CFSE) as a function of glass chemistry. Cr3+ CFSE ranges between 215 and 234 kJ/mol-Cr3+ and it increases with the theoretical glass basicity. Alkali-bearing glasses make a noticeable exception, as CFSE only varies with the nature of the alkali and not with its concentration. In glasses representing simplified magmatic compositions, CFSE varies by 7 kJ/mol-Cr3+ and the lowest CFSE values are observed in silica-rich compositions. This CFSE variation may contribute to the compositional dependence of mineral/liquid Cr-partition coefficients. Near UV-visible absorption spectra have been recorded up to 800 K, using a homemade diode array spectrometer fitted with a furnace. The modification of the optical spectra at high-temperature is characterized by a red shift of the Cr3+ absorption bands. CFSE shows a nearly linear negative dependence on temperature, with an overall variation of about 7 kJ/mol-Cr3+ over 500 K, a value similar to that characterizing the CFSE chemical dependence. This systematic red shift is related to the local thermal expansion of the Cr site and may be treated in glasses using a polyhedral approach. The Cr-O linear thermal expansion coefficient is 15-20 x 10(-6) K-1 in alkali-bearing silicate and borosilicate glasses and is similar to those determined in silicate minerals. The local thermal expansion coefficient exhibits a weak compositional dependence and is larger than the bulk thermal expansion coefficient of the glasses. The compositional and thermal dependence of the Cr3+ crystal field spectra shows that this ion is a sensitive probe of the evolution of glass structure as a function of composition or temperature. These data are consistent with the location of Cr3+ ions in cationic domains in glasses. (c) 2006 Elsevier B.V. All rights reserved.
机译:研究了硅酸盐玻璃中Cr3 +的光吸收(=晶体场)光谱,该光谱是化学成分和温度的函数。在很大范围的玻璃成分中,大多数光谱显示出晶体场稳定能(CFSE)随玻璃化学性质的变化。 Cr3 + CFSE的范围为215至234 kJ / mol-Cr3 +,并且随着理论玻璃碱度的增加而增加。含碱玻璃是一个明显的例外,因为CFSE仅随碱的性质而不是其浓度而变化。在代表简化岩浆成分的玻璃中,CFSE的变化幅度为7 kJ / mol-Cr3 +,在富含二氧化硅的成分中观察到了最低的CFSE值。 CFSE的这种变化可能有助于矿物/液体Cr分配系数的成分依赖性。使用装有炉子的自制二极管阵列光谱仪,可以记录高达800 K的近紫外可见吸收光谱。高温下光谱的改变以Cr3 +吸收带的红移为特征。 CFSE对温度几乎呈线性负相关性,在500 K上的整体变化约为7 kJ / mol-Cr3 +,该值类似于CFSE化学相关性的特征值。这种系统的红移与Cr部位的局部热膨胀有关,可以使用多面体方法在玻璃中进行处理。在含碱的硅酸盐和硼硅酸盐玻璃中,Cr-O线性热膨胀系数为15-20 x 10(-6)K-1,与在硅酸盐矿物中测定的相似。局部热膨胀系数表现出较弱的成分依赖性,并且大于玻璃的整体热膨胀系数。 Cr3 +晶体光谱的成分和热依赖性表明,该离子是玻璃结构随成分或温度变化的敏感探针。这些数据与玻璃中阳离子域中Cr3 +离子的位置一致。 (c)2006 Elsevier B.V.保留所有权利。

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