Coupling Self-Sensitized CO2 Photoreduction of Silicon(IV)-Terpyridine Complexes with Organic Synthesis

Abstract The development of new molecular photocatalysts for CO2 reduction has considerable interest. Furthermore, the direct utilization of CO2 reduction products in organic synthesis is a promising strategy for the valorization of CO2. Herein, we report the first use of main-group silicon(IV) coordination complexes as self-sensitized molecular photocatalysts for the near-unity-selective reduction of CO2 to CO without requiring an external photosensitizer. Under visible-light irradiation, these Si(IV) complexes are photoexcited and can be reductively quenched by 1,3-dimethyl-2-phenyl-2,3-dihydro-1H-benzo[d]imidazole (BIH). Mechanistic studies reveal five ligand-based reduction processes for Si(IV) complexes, with CO2 reduction occurring at a five-electron-reduced state of the ligand. The self-sensitized process was further elucidated by theoretical calculations, spectroelectrochemical analysis, emission quenching experiments, controlled-potential electrolysis, and in situ DRIFTS measurements. Notably, a sunlight-driven tandem catalytic system has been established by integrating this Si(IV)-based CO2 photoreduction with organic carbonylation to produce valuable carbonyl compounds.

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Publication Details

Journal
Inorganic Chemistry
Published
2026-09-30
DOI
https://doi.org/10.1021/acs.inorgchem.6c04041
Primary Topic
CO2 Reduction Techniques and Catalysts
Type
article
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Coupling Self-Sensitized CO2 Photoreduction of Silicon(IV)-Terpyridine Complexes with Organic Synthesis

Duobin Chao, Yilin Xue, Jinchi Han
Inorganic Chemistry
CO2 Reduction Techniques and Catalysts
article

Coupling Self-Sensitized CO2 Photoreduction of Silicon(IV)-Terpyridine Complexes with Organic Synthesis

Duobin Chao, Yilin Xue, Jinchi Han
article en

Abstract

Abstract The development of new molecular photocatalysts for CO2 reduction has considerable interest. Furthermore, the direct utilization of CO2 reduction products in organic synthesis is a promising strategy for the valorization of CO2. Herein, we report the first use of main-group silicon(IV) coordination complexes as self-sensitized molecular photocatalysts for the near-unity-selective reduction of CO2 to CO without requiring an external photosensitizer. Under visible-light irradiation, these Si(IV) complexes are photoexcited and can be reductively quenched by 1,3-dimethyl-2-phenyl-2,3-dihydro-1H-benzo[d]imidazole (BIH). Mechanistic studies reveal five ligand-based reduction processes for Si(IV) complexes, with CO2 reduction occurring at a five-electron-reduced state of the ligand. The self-sensitized process was further elucidated by theoretical calculations, spectroelectrochemical analysis, emission quenching experiments, controlled-potential electrolysis, and in situ DRIFTS measurements. Notably, a sunlight-driven tandem catalytic system has been established by integrating this Si(IV)-based CO2 photoreduction with organic carbonylation to produce valuable carbonyl compounds.

Inorganic Chemistry
Ningbo University (CN)
Openalex Percentile: Top 31%
CO2 Reduction Techniques and Catalysts
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Coupling Self-Sensitized CO2 Photoreduction of Silicon(IV)-Terpyridine Complexes with Organic Synthesis — Duobin Chao, Yilin Xue, et al. · Inorganic Chemistry (2026) | TGRS Research Map | TGRS