TY - JOUR
T1 - Selective hydrogenation of cinnamaldehyde with PtFex/Al2O3@SBA-15 catalyst
T2 - Enhancement in activity and selectivity to unsaturated alcohol by Pt-FeOx and Pt-Al2O3@SBA-15 interaction
AU - Pan, Huiyan
AU - Li, Junrui
AU - Lu, Jiqing
AU - Wang, Guimei
AU - Xie, Wenhui
AU - Wu, Peng
AU - Li, Xiaohong
N1 - Publisher Copyright:
© 2017 Elsevier Inc.
PY - 2017/10
Y1 - 2017/10
N2 - Selective hydrogenation of cinnamaldehyde (CAL) to cinnamyl alcohol (COL) was conducted over a series of FeOx-doped Pt catalysts supported on a 15 wt% Al2O3@SBA-15 composite (15AS). It was found that the addition of FeOx to the catalyst greatly improved its performance. With an optimal Fe/Pt molar ratio of 0.25, the PtFe0.25/15AS catalyst reached a maximum reaction rate (defined as moles of converted CAL per gram of Pt per hour) of 13.93 mol gPt−1 h−1 with 76.9% selectivity to COL. Additionally, the PtFe0.25/15AS catalyst afforded the highest TOF value (defined as moles of converted CAL per mole of Pt active sites per second) of 1.54 s−1. X-ray photoelectron spectroscopy analyses and H2 temperature-programmed reduction and CO diffuse-reflectance infrared Fourier-transformation spectroscopy studies reveal that there is strong interaction between Pt nanoparticles and Al2O3@SBA-15 composites and also between Pt and FeOx, resulting in Pt species with a positive charge being dominant in PtFe0.25/15AS catalysts. Therefore, Pt species with positive charges, together with FeOx species, are beneficial for preferential adsorption and activation of carbonyl bonds of CAL, so that the activity and selectivity to COL were improved by PtFex/15AS catalysts (x represents the Fe/Pt molar ratio).
AB - Selective hydrogenation of cinnamaldehyde (CAL) to cinnamyl alcohol (COL) was conducted over a series of FeOx-doped Pt catalysts supported on a 15 wt% Al2O3@SBA-15 composite (15AS). It was found that the addition of FeOx to the catalyst greatly improved its performance. With an optimal Fe/Pt molar ratio of 0.25, the PtFe0.25/15AS catalyst reached a maximum reaction rate (defined as moles of converted CAL per gram of Pt per hour) of 13.93 mol gPt−1 h−1 with 76.9% selectivity to COL. Additionally, the PtFe0.25/15AS catalyst afforded the highest TOF value (defined as moles of converted CAL per mole of Pt active sites per second) of 1.54 s−1. X-ray photoelectron spectroscopy analyses and H2 temperature-programmed reduction and CO diffuse-reflectance infrared Fourier-transformation spectroscopy studies reveal that there is strong interaction between Pt nanoparticles and Al2O3@SBA-15 composites and also between Pt and FeOx, resulting in Pt species with a positive charge being dominant in PtFe0.25/15AS catalysts. Therefore, Pt species with positive charges, together with FeOx species, are beneficial for preferential adsorption and activation of carbonyl bonds of CAL, so that the activity and selectivity to COL were improved by PtFex/15AS catalysts (x represents the Fe/Pt molar ratio).
KW - AlO@SBA-15 composites
KW - Cinnamaldehyde
KW - Cinnamyl alcohol
KW - PtFe/AlO@SBA-15 catalysts
KW - Selective hydrogenation
UR - https://www.scopus.com/pages/publications/85027963810
U2 - 10.1016/j.jcat.2017.07.026
DO - 10.1016/j.jcat.2017.07.026
M3 - 文章
AN - SCOPUS:85027963810
SN - 0021-9517
VL - 354
SP - 24
EP - 36
JO - Journal of Catalysis
JF - Journal of Catalysis
ER -