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Raman spectroscopy of basic copper(II) and some complex copper(II) sulfate minerals: Implications for hydrogen bonding

机译:碱性铜(II)和一些复杂的硫酸铜(II)矿物的拉曼光谱:对氢键的影响

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摘要

Raman spectroscopy has been applied to the study of basic Cu sulfates including antlerite, brochiantite, posnjakite, langite, and wroewolfeite and selected complex Cu sulfate minerals. Published X-ray diffraction data were used to estimate possible hydrogen bond distances for the basic Cu sulfate minerals. A Libowitzky empirical expression was used to predict hydroxyl-stretching frequencies and agreement with the observed values was excellent. This type of study was then extended to complex basic Cu sulfates: cyanotrichite, devilline, glaucocerinite, serpierite, and ktenasite. The position of the hydroxyl-stretching vibration was used to estimate the hydrogen bond distances between the OH and the SO4 units. The variation in bandwidth of the OH-stretching bands provided an estimate of the variation in these hydrogen bond distances. By plotting the hydrogen bond O...O distance as a function of the position of the SO4 symmetric stretching vibration, the position of the SO4 symmetric stretching band was found to be dependent upon the hydrogen bond distance for both the basic Cu sulfates and the complex Cu sulfates.
机译:拉曼光谱法已被用于研究碱性硫酸铜,包括硬钛矿,块晶石,硅黄铁矿,蓝铁矿和硅镁铁矿以及精选的复杂硫酸铜矿物。已发布的X射线衍射数据用于估算碱性硫酸铜矿物的可能氢键距离。 Libowitzky经验表达式用于预测羟基延伸频率,并且与观察值的一致性极好。然后,将这种类型的研究扩展到复杂的碱性铜硫酸盐:氰钛矿,魔鬼石,青铜石,绢云母和硅镁石。羟基拉伸振动的位置用于估计OH和SO4单元之间的氢键距离。 OH拉伸带的带宽变化提供了这些氢键距离变化的估计。通过绘制氢键O ... O距离与SO4对称拉伸振动位置的函数关系图,发现SO4对称拉伸带的位置取决于碱性硫酸铜和硫酸铜的氢键距离。复合硫酸铜。

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