A Stable, Mesoporous Three‐Dimensional Covalent Organic Framework as a Versatile Functional Platform
Abstract
ABSTRACT Introducing functionality into the pore channels of covalent organic frameworks (COFs) without compromising their crystallinity and porosity remains a formidable challenge. Herein, we present a stable, mesoporous 3D COF, JUC‐685, which exhibits a surface area of 2,188 m 2 g −1 and a pore size of 3.20 nm. This robust structure serves as a versatile platform for constructing functionalized COFs while preserving structural integrity. Using a solvent‐assisted linker exchange (SALE) strategy, we successfully incorporated a series of challenging functional moieties—including azobenzene, carbazole, and complex heterocycles—to generate an isoreticular series, JUC‐686 to JUC‐689. This methodology effectively decouples functionality from structural order. The azobenzene‐functionalized derivative, JUC‐686, retains a high surface area of 2,131 m 2 g −1 and a mesopore of 3.09 nm. Crucially, the photoresponsive azobenzene units within its spacious pores enable remarkable, light‐induced modulation of CO 2 adsorption capacity, with a change rate reaching 60.4% under UV irradiation—the highest performance reported for any azobenzene‐functionalized porous materials. This work establishes a general platform for the synthesis of highly crystalline COFs with pore‐wall functionality, unlocking new opportunities in smart adsorption, catalysis, and beyond.
Article Details
Authors (11)
Chengyu Ji
Haorui Zheng
Wenjuan Zhao
Jinquan Suo
Jilin University , , ,
Zitao Wang
Jianghong Chang
State Key Laboratory of Inorganic Synthesis and Preparative Chemistry Jilin University Changchun P.R. China
Hui Li
Fengqian Chen
Jilin University , , ,
Valentin Valtchev
Chinese Academy of Sciences , , 189 Songling Road , ,
Shilun Qiu
Jilin University , , ,
Qianrong Fang
Jilin University , , ,