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Synergistic mechanism between Bronsted acid site and active cerium species in hydride transfer reaction over CeY zeolites 被引量:3
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作者 jianhao jiao Yucai Qin +4 位作者 Jian Zheng Yu Hui Li Zhang Xionghou Gao Lijuan Song 《Journal of Rare Earths》 SCIE EI CAS CSCD 2020年第8期912-920,I0003,共10页
In this study,cyclohexene was used as a representative of olefin and catalyzed by CeY zeolites in a fixedbed reactor under mild conditions,and the influence of Ce species in hydride transfer reaction over CeY zeolites... In this study,cyclohexene was used as a representative of olefin and catalyzed by CeY zeolites in a fixedbed reactor under mild conditions,and the influence of Ce species in hydride transfer reaction over CeY zeolites was evaluated.CeY zeolites show more excellent hydride transfer properties than HY zeolite.Based on the results of almost identical Bronsted acid properties but not the product distributions for 0.075 CeY and 0.075 CeY(DC)samples,it should be suggested that the Bronsted acid strength and density are not the deciding factors to the hydride transfer reaction.A unique band at 1442 cm^-1 in situ FTIR spectroscopy spectra are assigned to pyridine complexes bonded to a class of active Ce species that could reversibly migrate from the core of SOD cages to its 6-rings mouth towards the supercages.These results provide valuable information that these active Ce species should play a synergistic role with the Bronsted acid sites in enhancing the hydride transfer reaction with a bimolecular mechanism over CeY zeolites. 展开更多
关键词 CeY zeolites Hydride transfer Synergistic mechanism Active Ce species Bronsted acid Rare earths
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