TY - JOUR
T1 - Hexaniobate as a Recyclable Solid Base Catalyst to Activate C-H Bonds in Lignin Linkage Boosting the Production of Aromatic Monomers
AU - Li, Jie
AU - Li, Zhen
AU - Dong, Jing
AU - Fang, Renbo
AU - Chi, Yingnan
AU - Hu, Changwen
N1 - Publisher Copyright:
© 2023 American Chemical Society.
PY - 2023/4/21
Y1 - 2023/4/21
N2 - The targeting cleavage of lignin into value-added aromatic monomers has attracted increasing attention. Although the base-catalyzed depolymerization of lignin has been developed, the use of excess corrosive bases and their poor recyclability limit their industrial implementation. Herein, a catalytic amount of solid base K7HNb6O19 (KNb6) coupled with copper-modified graphitic carbon nitride (Cu/C3N4) shows enhanced catalytic performance for the oxidative cleavage of β-O-4 lignin linkages using molecular oxygen. Due to the synergetic effect between KNb6 and Cu/C3N4, 96% of the β-O-4 ketone model was converted under relatively mild conditions, and phenol (yield: 90%) and other aromatic monomers (yield: 90%) were obtained. Moreover, KNb6-Cu/C3N4 is robust, and its catalytic activity is basically maintained after five cycles. Experimental and theoretical studies (spectroscopic analysis, control experiments, kinetic study, density functional theory calculations, etc.) reveal that the surface basic O atoms of KNb6 can simultaneously activate the Cβ-H bond of β-O-4 ketone to promote the insertion of molecular oxygen, and subsequently, Cu/C3N4 catalyzes the selective cleavage of the Cα-Cβ bond. The catalysts were also active for the oxidative cleavages of other lignin models and oxidized organosolv lignin.
AB - The targeting cleavage of lignin into value-added aromatic monomers has attracted increasing attention. Although the base-catalyzed depolymerization of lignin has been developed, the use of excess corrosive bases and their poor recyclability limit their industrial implementation. Herein, a catalytic amount of solid base K7HNb6O19 (KNb6) coupled with copper-modified graphitic carbon nitride (Cu/C3N4) shows enhanced catalytic performance for the oxidative cleavage of β-O-4 lignin linkages using molecular oxygen. Due to the synergetic effect between KNb6 and Cu/C3N4, 96% of the β-O-4 ketone model was converted under relatively mild conditions, and phenol (yield: 90%) and other aromatic monomers (yield: 90%) were obtained. Moreover, KNb6-Cu/C3N4 is robust, and its catalytic activity is basically maintained after five cycles. Experimental and theoretical studies (spectroscopic analysis, control experiments, kinetic study, density functional theory calculations, etc.) reveal that the surface basic O atoms of KNb6 can simultaneously activate the Cβ-H bond of β-O-4 ketone to promote the insertion of molecular oxygen, and subsequently, Cu/C3N4 catalyzes the selective cleavage of the Cα-Cβ bond. The catalysts were also active for the oxidative cleavages of other lignin models and oxidized organosolv lignin.
KW - activation of C−H bond
KW - catalytic oxidative cleavage
KW - cleavage of lignin model compounds
KW - polyoxoniobates
KW - solid base catalyst
UR - http://www.scopus.com/inward/record.url?scp=85151860181&partnerID=8YFLogxK
U2 - 10.1021/acscatal.2c06206
DO - 10.1021/acscatal.2c06206
M3 - Article
AN - SCOPUS:85151860181
SN - 2155-5435
VL - 13
SP - 5272
EP - 5284
JO - ACS Catalysis
JF - ACS Catalysis
IS - 8
ER -