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首页> 外文期刊>Journal of Applied Crystallography >An investigation of the properties of large crystals of the zeolites dodecasil-3C and ferrierite by hightemperature birefringence microscopy and X-ray diffraction
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An investigation of the properties of large crystals of the zeolites dodecasil-3C and ferrierite by hightemperature birefringence microscopy and X-ray diffraction

机译:高温双折射显微镜和X射线衍射研究十二碳3C和镁碱沸石沸石大晶体的性能

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摘要

Optical birefringence has been measured as a function of temperature for two types of siliceous zeolite crystals that contain organic template molecules. The specimens were prepared using modified solvothermal synthesis to produce large (1 mm dimension) crystals. In the case of the clathrasil dodecasil-3C the material undergoes a first-order phase transition at 433 K that is reversible after heating to 873 K and cooling to room temperature. Comparison with powder X-ray diffraction data from a bulk sample shows that this is a ferroelastic tetragonal (I42d) to cubic (Fd3m) transition, which is supported by the functional form of temperature variation of the birefringence. There is apparently no loss of the organic template involved in this transition. For the zeolite ferrierite, the plate-like crystals show a pronounced domain-like structure, which, although not due to twinning, shows a distinctive optical birefringence change on heating, suggesting that variable concentrations of organic template might be present in different domain-like regions. In this material there is no evidence for a change in crystal symmetry up to 873 K (Pnnm), despite apparent loss of some organic template from the material which, in turn, gives rise to strain birefringence at the edges parallel to the [010] direction.
机译:对于包含有机模板分子的两种类型的硅质沸石晶体,已经测量了光学双折射与温度的关系。使用改进的溶剂热合成制备样品,以产生大(1毫米尺寸)晶体。在clathrasil dodecasil-3C的情况下,材料在433 K处经历一阶相变,在加热至873 K并冷却至室温后可逆。与来自大量样品的粉末X射线衍射数据的比较表明,这是铁弹性四方(I42d)到立方(Fd3m)的转变,这由双折射的温度变化的函数形式支持。显然,在此过渡过程中不会丢失有机模板。对于沸石镁碱沸石,板状晶体显示出明显的畴状结构,尽管不是由于孪晶,但在加热时表现出明显的光学双折射变化,这表明在不同的畴状中可能存在浓度可变的有机模板。地区。在这种材料中,没有证据表明直至873 K(Pnnm)的晶体对称性都发生了变化,尽管该材料明显损失了一些有机模板,继而在平行于[010]的边缘上引起了应变双折射。方向。

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