Fabrication of hydrophobic Pd/Al2O3-phosphoric acid via P-O-Al bond for liquid hydrogenation reaction
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Fabrication of hydrophobic Pd/Al2O3-phosphoric acid via P-O-Al bond for liquid hydrogenation reaction
Fabrication of hydrophobic Pd/Al2O3-phosphoric acid via P-O-Al bond for liquid hydrogenation reaction
中国化学工程学报(英文版)2023年53卷第1期 页码:232-242
Affiliations:
1. State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology,Beijing,China,100029
2. Beijing Engineering Center for Hierarchical Catalysts, Beijing University of Chemical Technology,Beijing,China,100029
Author bio:
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DOI:
中图分类号:
纸质出版:2023
Accepted:
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Lu Lv, Min Zhao, Yanan Liu, 等. Fabrication of hydrophobic Pd/Al2O3-phosphoric acid via P-O-Al bond for liquid hydrogenation reaction[J]. 中国化学工程学报(英文版), 2023,53(1):232-242.
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Lu Lv, Min Zhao, Yanan Liu, 等. Fabrication of hydrophobic Pd/Al2O3-phosphoric acid via P-O-Al bond for liquid hydrogenation reaction[J]. 中国化学工程学报(英文版), 2023,53(1):232-242.DOI:
ODOI:
Fabrication of hydrophobic Pd/Al2O3-phosphoric acid via P-O-Al bond for liquid hydrogenation reaction
) is widely used in the chemical industry as the catalyst and support due to its high specific surface area
abundant pore size distribution and chemical stability. However
the occurrence of hydration in water environment
result in outstanding decrease in specific surface area and collapse of pore structure. In this work
dodecyl phosphoric acid (PA) is used to modify the surface of Al
2
O
3
to obtain a series of hydrophobic material (Al
2
O
3
-PA). Based on XPS and NMR analysis
PA is chemically bonded on Al
2
O
3
to form P-O-Al bond. Furthermore
BET and WCA results display that Al
2
O
3
-1PA exhibits excellent the hydrophobicity and hydrothermal stability while maintains the pore structure. Take it as the substrate to support the Pd nanoparticles
the as-prepared Pd/Al
2
O
3
-PA shows the superior catalytic performance in the hydrogenation of phenol and anthraquinone relative to Pd/Al
2
O
3
indicating the accessibility of Pd sites after PA modification. Especially
the significantly enhanced stability is also obtained in four cycles for a
queous phenol hydrogenation. This can be ascribed that the PA modification inhibits the aggregation of Pd nanoparticles and the products adhesion in the reaction process. The extension of PA coatings to monolithic catalysts could expand their current capabilities in industrial applications and warrants ongoing investigation.
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