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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Crystallization in nonaqueous media of Co- and Mn-substituted microporous aluminophosphates investigated by in situ synchrotron X-ray powder diffraction
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Crystallization in nonaqueous media of Co- and Mn-substituted microporous aluminophosphates investigated by in situ synchrotron X-ray powder diffraction

机译:原位同步加速器X射线粉末衍射研究Co和Mn取代的微孔铝磷酸盐在非水介质中的结晶

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In situ synchrotron X-ray powder diffraction was used to investigate the crystallization of microporous transition metal-substituted aluminophosphates from nonaqueous media. The gels contained ethylene glycol and triethylamine as the template and were heated in quartz glass capillaries at temperatures up to 200 degrees C. The following crystalline products were formed: MnAPO-5, [AFI], CoAPO-5, [AFI], and AlPO4-5, [AFI]. Three nonaqueous systems were investigated in situ, where the crystallization of MAPO-5-type materials were followed. Solvothermal crystallization of MnAPO-5 and CoAPO-5 was studied, and the effect of adding HF as a mineralizing agent was investigated. Time-resolved powder diffraction data were collected using a translating imaging plate (TIP) camera, and crystallization curves were extracted using integrated diffraction peaks. Kinetic analysis of the crystallization curves was performed using an Avrami-type expression, alpha(t) = exp(-(kt)(n)). Apparent activation energies were determined from Arrhenius plots: MnAPO-5, 94 kJ/mol; MnAPO-5(HF), 68 kJ/mol; CoAPO-5, 61 kJ/mol. Crystallization of CoAPO-5 is faster than for MnAPO-5, and the values for n obtained by fitting with the Avrami-type expression were significantly lower for CoAPO-5 than for MnAPO-5. [References: 32]
机译:原位同步加速器X射线粉末衍射用于研究非水介质中微孔过渡金属取代的铝磷酸盐的结晶。凝胶以乙二醇和三乙胺为模板,并在石英玻璃毛细管中加热到200摄氏度。形成以下结晶产物:MnAPO-5,[AFI],CoAPO-5,[AFI]和AlPO4 -5,[AFI]。在原位研究了三种非水体系,其中跟踪了MAPO-5型材料的结晶过程。研究了MnAPO-5和CoAPO-5的溶剂热结晶,研究了添加HF作为矿化剂的效果。使用平移成像板(TIP)相机收集时间分辨的粉末衍射数据,并使用积分衍射峰提取结晶曲线。使用Avrami型表达式α(t)= exp(-(kt)(n))进行结晶曲线的动力学分析。根据Arrhenius曲线确定表观活化能:MnAPO-5,94kJ / mol; MnAPO-5,94kJ / mol。 MnAPO-5(HF),68 kJ / mol; CoAPO-5,61 kJ /摩尔。 CoAPO-5的结晶速度比MnAPO-5快,并且通过拟合Avrami型表达获得的n值对于CoAPO-5明显低于MnAPO-5。 [参考:32]

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