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Role of the Strong Lewis Base Sites on Glucose Hydrogenolysis
Author(s) -
Yazdani Parviz,
Wang Bo,
Gao Feng,
Kawi Sibudjing,
Borgna Armando
Publication year - 2018
Publication title -
chemcatchem
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.497
H-Index - 106
eISSN - 1867-3899
pISSN - 1867-3880
DOI - 10.1002/cctc.201800427
Subject(s) - lanthanide , hydrogenolysis , chemistry , base (topology) , catalysis , lewis acids and bases , isomerization , inorganic chemistry , organic chemistry , ion , mathematical analysis , mathematics
This work reports the individual role of strong Lewis base sites on catalytic conversion of glucose hydrogenolysis to acetol/lactic acid, including glucose isomerisation to fructose and pyruvaldehyde rearrangement/hydrogenation to acetol/lactic acid. La 2 O 3 , Nd 2 O 3 , Sm 2 O 3 , and Pr 6 O 11 were selected as representative oxides consisting of different base sites. The basicity of these lanthanide oxides was characterised by CO 2 ‐TPD and DRIFT spectroscopy. It was found that lanthanide cation‐oxygen pairs, Brønsted OH group coordinated with one Lanthanide cation, and lanthanide cation near lanthanide cation‐oxygen pairs are the dominant base sites as compared to the other base sites on La 2 O 3 , Nd 2 O 3 , Sm 2 O 3 and Pr 6 O 11 . In addition, the relative concentration of the base sites is different over the examined lanthanide oxides. These unique properties of lanthanide oxides are used to understand the individual role of base sites on the reactions mentioned above. Then, the catalytic results were correlated with the base properties of these lanthanide oxides. Based on this correlation, the base site requirements for each reaction were identified. In this regard, Brønsted OH group coordinated with one Lanthanide cation over Nd 2 O 3 is found to be the suitable base site for glucose isomerisation. On the other hand, lactic acid is produced as the main product in glucose hydrogenolysis over lanthanide cation near lanthanide‐oxygen pairs on Pr 6 O 11 . Finally, lanthanide‐oxygen pairs over La 2 O 3 are suitable base sites for retro‐aldol condensation of fructose to C 3 chemicals.