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高比表面积氟化铝材料制备的研究进展
引用本文:于洪波,林建军,谢冠群,王月娟,罗孟飞.高比表面积氟化铝材料制备的研究进展[J].工业催化,2012,20(10):14-20.
作者姓名:于洪波  林建军  谢冠群  王月娟  罗孟飞
作者单位:先进催化材料教育部重点实验室,浙江师范大学物理化学研究所,浙江 金华 321004
基金项目:浙江省科技厅项目资助项目(2010C31031031)
摘    要:氟化铝是金属氟化物中最具代表性的一类无机材料,具有L酸中心,广泛用作催化剂或催化剂载体,主要应用于氟氯烃及其ODS替代品的气固相催化合成。高比表面积氟化铝具有更多的表面L酸中心。综述了近年国内外高比表面积氟化铝合成的研究成果,评述了高比表面积无定形AlF3和晶型AlF3(β-AlF3、α-AlF3和γ-AlF3等)的合成方法,分析了溶胶-凝胶法、气相氟化法和加热分解法等方法对高比表面积氟化铝合成的影响。分析了高比表面积氟化铝合成中存在的一些问题,展望了高比表面积氟化铝合成的发展趋势和应用。

关 键 词:催化化学  高比表面积氟化铝  L酸  溶胶-凝胶法  热分解  

Progress in preparation of aluminum fluoride materials with high surface area
YU Hongbo , LIN Jianjun , XIE Guanqun , WANG Yuejuan , LUO Mengfei.Progress in preparation of aluminum fluoride materials with high surface area[J].Industrial Catalysis,2012,20(10):14-20.
Authors:YU Hongbo  LIN Jianjun  XIE Guanqun  WANG Yuejuan  LUO Mengfei
Affiliation:Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, Institute of Physical Chemistry, Zhejiang Normal University, Jinhua 321004, Zhejiang, China
Abstract:Aluminum fluoride is the most representative inorganic material in the metal fluorides, and is widely used as catalyst or catalyst support for synthesis of chlorofluorocarbons and ODS substitute in the gas-solid phase due to its Lewis acid centers. Aluminum fluoride with high surface area has more amount of surface Lewis acid sites. The progress in the preparation of aluminum fluoride with high surface area in recent years was reviewed. The synthetic methods of the amorphous aluminum fluoride and crystalline alu- minium fluorides ( 13-A1F3, oL-A1F3, ~-AIF3, etc. ) were summarized. Different synthesis methods, such as sol-gel method, gas phase fluorination and thermal decomposition method, were also evaluated. The exist- ing problems in the preparation of aluminum fluoride with high surface area were discussed. The develop- ment trend and application of aluminum fluoride with high surface area were also outlined.
Keywords:catalytic chemistry  aluminum fluoride with high surface area  Lewis acid  sol-gel method  thermal decomposition
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