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◆ Inorganic Chemistry2025-12-08· Chemistry

Cu(I)-Anchored NHC-Functionalized Covalent Organic Framework (COF) for Catalyzing CO <sub>2</sub> Chemical Fixation into High-Value Compounds

Vaibhav Parihar, Pooja Rani, Shubham Kumar, Preeti Beniwal, C. M. Nagaraja

原始摘要(英文原文)· Original abstract
Rapid urbanization has intensified global energy demands, leading to elevated carbon dioxide emissions. Therefore, capturing and utilizing CO 2 as a C1 feedstock is a viable way to synthesize value-added compounds while mitigating carbon emissions. Consequently, this study reveals the sensible design of an effective and highly reusable catalyst for efficiently exploiting CO 2 for the production of useful chemicals. For this, we designed an imidazole-based ionic COF (IL-COF), which was utilized to anchor eco-friendly alkynophilic, non-noble, Cu(I) metal ions to get an NHC (N-heterocyclic-carbene)-based covalent organic framework (COF), Cu(I)-NHC-COF. The catalyst showed outstanding performance for the transformation of CO 2 with propargylic alcohols to produce α-alkylidene cyclic carbonates (α-ACCs) and further promoted a one-pot, 3-component reaction of secondary amines and propargylic alcohols to obtain highly valuable β-oxopropylcarbamates. Additionally, the comprehensive theoretical investigations revealed the detailed reaction pathways for CO 2 coupling leading to the synthesis of α-ACCs and β-oxopropylcarbamates catalyzed by Cu(I)-NHC-COF. Moreover, NHC-COF presented excellent recyclability for several catalytic cycles without potential leaching and retained its chemical stability and catalytic activity. Overall, this study showcases a sustainable and green methodology of utilizing a noble-metal-free COF for the exploitation of CO 2 into high value carbamates and carbonates under ambient conditions.
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Cu(I)-Anchored NHC-Functionalized Covalent Organic Framework (COF) for Catalyzing CO <sub>2</sub> Chemical Fixation into High-Value Compounds — 科研速览 Science Skim