TY - JOUR
T1 - Hierarchical Pd@PC-COFs as Efficient Catalysts for Phenol Hydrogenation
AU - Shen, Xinhui
AU - Zhang, Jiuxuan
AU - Jiang, Hong
AU - Du, Yan
AU - Chen, Rizhi
N1 - Publisher Copyright:
© 2022 American Chemical Society. All rights reserved.
PY - 2022/4/6
Y1 - 2022/4/6
N2 - One-step hydrogenation of phenol is a green approach to produce cyclohexanone, an important intermediate for the synthesis of nylon. The design and fabrication of high-performance catalysts still present a great challenge. Herein, a series of triazinyl covalent organic frameworks (PC-COFs) were prepared by adjusting the synthesis time using a solvothermal method, and then, Pd@PC-COF catalysts were fabricated by anchoring Pd. Controlling the synthesis time can lead to the fabrication of PC-COFs with high crystallinity, large specific surface area, abundant mesopores, and rich N element, increasing the Pd content with higher Pd(0) proportion and enhancing the mass transfer, thereby improving the catalytic performance of Pd@PC-COFs for phenol hydrogenation. The as-fabricated catalyst has good reusability during the reaction cycles of phenol hydrogenation. This work develops an efficient approach to fabricate high-performance Pd-based catalysts for phenol hydrogenation.
AB - One-step hydrogenation of phenol is a green approach to produce cyclohexanone, an important intermediate for the synthesis of nylon. The design and fabrication of high-performance catalysts still present a great challenge. Herein, a series of triazinyl covalent organic frameworks (PC-COFs) were prepared by adjusting the synthesis time using a solvothermal method, and then, Pd@PC-COF catalysts were fabricated by anchoring Pd. Controlling the synthesis time can lead to the fabrication of PC-COFs with high crystallinity, large specific surface area, abundant mesopores, and rich N element, increasing the Pd content with higher Pd(0) proportion and enhancing the mass transfer, thereby improving the catalytic performance of Pd@PC-COFs for phenol hydrogenation. The as-fabricated catalyst has good reusability during the reaction cycles of phenol hydrogenation. This work develops an efficient approach to fabricate high-performance Pd-based catalysts for phenol hydrogenation.
UR - http://www.scopus.com/inward/record.url?scp=85127886085&partnerID=8YFLogxK
U2 - 10.1021/acs.iecr.1c05009
DO - 10.1021/acs.iecr.1c05009
M3 - 文章
AN - SCOPUS:85127886085
SN - 0888-5885
VL - 61
SP - 4534
EP - 4545
JO - Industrial and Engineering Chemistry Research
JF - Industrial and Engineering Chemistry Research
IS - 13
ER -