Synthesis of ordered mesoporous crystalline boron phosphate scaffold with double diamond surface structure

被引:0
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作者
Chao Wang [1 ]
WenDuo Lu [2 ]
Jiao Wang [1 ]
Shunai Che [1 ,3 ]
AnHui Lu [2 ]
Lu Han [1 ]
机构
[1] School of Chemical Science and Engineering,Tongji University
[2] State Key Laboratory of Fine Chemicals,Liaoning Key Laboratory for Catalytic Conversion of Carbon Resources,School of Chemical Engineering,Dalian University of Technology
[3] School of Chemistry and Chemical Engineering,Frontiers Science Center for Transformative Molecules,State Key Laboratory of Metal Matrix Composites,Shanghai Key Laboratory for Molecular Engineering of Chiral Drugs,Shanghai Jiao Tong
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中图分类号
O641.3 [分子间的相互作用、超分子化学]; O643.36 [催化剂];
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摘要
Ordered mesoporous materials have received great attention due to their well-defined pore structures and potential applications in catalysis,adsorption,separation,drug delivery,etc.Although various compositions of mesoporous solids have been successfully prepared,the preparation of crystalline non-metallic oxyacid salts with ordered mesoporosity remains a major challenge.Herein,we report the synthesis of a mesoporous solid acid crystalline boron phosphate(BPO4) catalyst with a bicontinuous shifted double diamond(SDD) hyperbolic surface structure.The BPO4 scaffold was obtained by synergistic selfassembly in a mixed solvent of water and tetrahydrofuran using the diblock copolymer poly(ethylene oxide)-block-polystyrene as template and phosphoric acid and orthoboric acid as inorganic sources.The structure consists of two sets of diamond networks adjacent to each other with a mesostructural scale tetragonal symmetry(space group I41/amd) with unit cell parameters of a=80 nm and c=113 nm,which affords the scaffold a specific surface area of 44 m2/g.As a solid acid catalytic material,the SDD BPO4 scaffold exhibited excellent catalytic activity at room temperature with a conversion of furfural to 2-(dimethoxymethyl)furan over 70% and can be reused after recovery without serious loss of activity.In the propane oxidative dehydrogenation reaction,SDD BPO4 demonstrated high olefin productivity and selectivity while maintaining high reaction rate.This study provides ideas for the preparation of ordered mesoporous crystalline catalytic materials and demonstrates their potential for practical applications.
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页码:590 / 600
页数:11
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