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Synthesis and spectroscopic study of mesoporous aluminum methylphosphonate foam templated by dibutyl methylphosphonate

机译:synthesis and spectroscopic study of mesoporous aluminum methylphosphonate foam templated by dibutyl methylphosphonate

摘要

New types of templates and novel interactive mechanisms between template and framework are very important for creating porous materials. In this work, by using neutral dibutyl methylphosphonate as a template, an inorganic-organic hybrid mesoporous material, aluminum methylphosphonate, was prepared. The as-synthesized material was studied by P-31 magnetic angle spinning nuclear magnetic resonance (MAS NMR), Al-27 MAS NMR, C-13 CP/MAS, FT-IR spectroscopy, thermogravimetry (TG), differential thermal analysis (DTA), and transmission electron microscopy. After thermal treatment at 673 K and 10 mmHg for 2 h, hybrid mesoporous foam was obtained. The transformation process was investigated by FT-IR. TG-DTA results indicate that the methyl group bonded to the framework keeps intact up to 792 K under air and 823 K under nitrogen. The characterization results from nitrogen gas adsorption-desorption measurements show that the BET surface area and the Barrett-Joyner-Halenda desorption cumulative pore volume of the foam are 90 m(2) g(-1) and 0.32 cm(3) g(-1) respectively. (C) 2003 Elsevier Inc. All rights reserved.
机译:新型模板以及模板与框架之间新颖的交互机制对于创建多孔材料非常重要。在这项工作中,以中性甲基膦酸二丁酯为模板,制备了无机-有机杂化介孔材料,甲基膦酸铝。通过P-31磁角旋转核磁共振(MAS NMR),Al-27 MAS NMR,C-13 CP / MAS,FT-IR光谱,热重分析(TG),差热分析(​​DTA)研究了合成后的材料)和透射电子显微镜。在673 K和10 mmHg下热处理2小时后,获得了杂化介孔泡沫。通过FT-IR研究了转化过程。 TG-DTA结果表明,与骨架键合的甲基在空气中最高可达792 K,在氮气下最高可达823K。氮气吸附-解吸测量的表征结果表明,泡沫的BET表面积和Barrett-Joyner-Halenda解吸累积孔体积分别为90 m(2)g(-1)和0.32 cm(3)g(- 1)。 (C)2003 Elsevier Inc.保留所有权利。

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