Jie Li, Pengpeng Shao, Peng Lei, Di Zhang, Chengpeng Liu, Shilu Chen, Yingnan Chi, Changwen Hu
2026.1.20ACS Catalysis
Abstract
Proton shuttles play a vital role in diverse chemical transformations; however, most known examples, such as water and small organic molecules, operate in homogeneous systems with colocated proton donor and acceptor sites. In contrast, recyclable proton shuttle catalysts with spatially separated donor and acceptor sites are highly desirable due to their enhanced flexibility in proton transfer but remain largely unexplored. Herein, we identify the polyoxoniobate K 7 HNb 6 O 19 ·13H 2 O (KNb 6 ) as a special type of recyclable proton shuttle catalyst that enables rapid cleavage of lignin β- O -4 ketone into value-added phenol (yield: 93%) and benzonitrile (yield: 73%) within 10 min, using NH 2 OH·H 2 O as the N-source. Combined computational and experimental studies reveal that the unique surface of KNb 6, featuring a proton-donating hydroxyl group (−OH) surrounded by multiple proton-accepting oxo ligands (O 2– ), facilitates a proton-shuttling mechanism that drives both C β –O and C α –C β bond cleavage of a ketoxime intermediate formed in situ. Moreover, KNb 6 maintains a stable catalytic performance over multiple cycles and efficiently promotes the depolymerization of oxidized natural lignin. This work not only provides a robust and recyclable catalyst for biomass valorization but also offers insights into the design of recyclable proton transfer systems.
Citation format
LI, Jie, et al. Polyoxoniobate as a recyclable proton shuttle enabling efficient lignin β- o -4 linkage cleavage: Experimental and theoretical insights. ACS Catalysis, 2026, 16(3): 2268–2279.