A biomass-derived conjugated polymer with imine N and furan O sites for photocatalytic CO2 cycloaddition

The development of efficient, sustainable photocatalytic systems for CO 2 utilization remains critical for green chemical processes. In this work, a biomass-derived conjugated polymer (FDS) was synthesized via Schiff-base condensation of renewable 2,5-diformylfuran and 1,5-naphthalenediamine and employed as a metal-free heterogeneous photocatalyst for the cycloaddition of CO 2 with epoxides. Under visible-light irradiation, FDS enabled the solvent-free conversion of epichlorohydrin and CO 2 at room temperature and atmospheric pressure, affording 4-(chloromethyl)-1,3-dioxolan-2-one in 97% yield within 3 h. The catalyst delivers yields above 90% for a series of epoxide substrates with prolonged reaction time of 6 h, maintains high catalytic performance after 10 consecutive recycling runs, and exhibits considerable activity under natural sunlight irradiation. Mechanistic studies supported by DFT calculations revealed that the imine-linked framework facilitates photoinduced charge separation and epoxide polarization, while CO 2 is cooperatively activated at the imine N and furan O sites. This work presents a sustainable approach for metal-free photocatalytic CO 2 valorization, providing a promising strategy for green chemical manufacturing.

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Journal
Sustainable Chemistry and Pharmacy
Published
2026-10-05
DOI
https://doi.org/10.1016/j.scp.2026.102576
Primary Topic
Carbon dioxide utilization in catalysis
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article
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article

A biomass-derived conjugated polymer with imine N and furan O sites for photocatalytic CO2 cycloaddition

Qingmei Ge, Wenfeng Zhao, Hang Cong, Nan Jiang et al.
Sustainable Chemistry and Pharmacy
Carbon dioxide utilization in catalysis
article

A biomass-derived conjugated polymer with imine N and furan O sites for photocatalytic CO2 cycloaddition

Qingmei Ge, Wenfeng Zhao, Hang Cong, Nan Jiang, Mengxuan Wang, Jiang Zhao, Yin-Hui Huang
article en

Abstract

The development of efficient, sustainable photocatalytic systems for CO 2 utilization remains critical for green chemical processes. In this work, a biomass-derived conjugated polymer (FDS) was synthesized via Schiff-base condensation of renewable 2,5-diformylfuran and 1,5-naphthalenediamine and employed as a metal-free heterogeneous photocatalyst for the cycloaddition of CO 2 with epoxides. Under visible-light irradiation, FDS enabled the solvent-free conversion of epichlorohydrin and CO 2 at room temperature and atmospheric pressure, affording 4-(chloromethyl)-1,3-dioxolan-2-one in 97% yield within 3 h. The catalyst delivers yields above 90% for a series of epoxide substrates with prolonged reaction time of 6 h, maintains high catalytic performance after 10 consecutive recycling runs, and exhibits considerable activity under natural sunlight irradiation. Mechanistic studies supported by DFT calculations revealed that the imine-linked framework facilitates photoinduced charge separation and epoxide polarization, while CO 2 is cooperatively activated at the imine N and furan O sites. This work presents a sustainable approach for metal-free photocatalytic CO 2 valorization, providing a promising strategy for green chemical manufacturing.

Sustainable Chemistry and PharmacyVol. 54
Guizhou University (CN)
Openalex Percentile: Top 25%
Carbon dioxide utilization in catalysis
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A biomass-derived conjugated polymer with imine N and furan O sites for photocatalytic CO2 cycloaddition — Qingmei Ge, Wenfeng Zhao, et al. · Sustainable Chemistry and Pharmacy (2026) | TGRS Research Map | TGRS