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Synthesis, characterization and template removal of an iron-containing aluminophosphate molecular sieve with LAU topology

机译:具有LAU拓扑的含铁铝磷酸盐分子筛的合成,表征和模板去除

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摘要

Iron(II)-substituted LAU-zeotype aluminophosphate molecular sieve (denoted as FeAPO-LAU) was synthesized successfully by using Imidazole as template in the solvothermal system. The detemplation process was studied to elucidate the stability and microporous characteristics of FeAPO-LAU. In situ temperature-dependent X-ray diffraction analyses indicated that the framework of FeAPO-LAU possessed higher thermal stability and maintained the framework integrity until 923 K. The organic templates could be removed by stage-temperature-programmed calcination using lower heating rate in O2 atmosphere, which gave rise to the sample with surface areas of ca. 105 m~2/g. NHs-temperature programmed desorp-tion (NH3-TPD) analysis showed that detemplated FeAPO-LAU had a weak acidity. Magnetic measurement revealed that both as-synthesized and detemplated FeAPO-LAU showed antiferromagnetic behaviour.
机译:以咪唑为模板,在溶剂热体系中成功合成了铁(Ⅱ)取代的LAU-沸石型磷酸铝分子筛(称为FeAPO-LAU)。研究了去模板过程,以阐明FeAPO-LAU的稳定性和微孔特性。原位依赖温度的X射线衍射分析表明FeAPO-LAU的骨架具有较高的热稳定性,并保持骨架的完整性,直到923K。有机模板可以通过阶段升温程序煅烧以较低的O2加热速率除去。大气,这导致样品的表面积约。 105 m〜2 / g。 NHs温度程序解吸(NH3-TPD)分析表明,脱模板的FeAPO-LAU具有弱酸性。磁性测量表明,合成后的和拟定的FeAPO-LAU均显示反铁磁行为。

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