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Design of a Robust Graphene Oxide–Palladium Porphyrin Catalyst for the Selective and Sustainable Synthesis of Diaryl Ethers
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Abstract
Diaryl ethers are valuable motifs in pharmaceuticals and natural products, motivating the search for efficient and sustainable synthesis methods. We introduce a graphene oxide–supported palladium porphyrin nanocatalyst (GO-CPTMS@Pd-TKHPP) for the O-arylation of phenols. The catalyst exhibited high stability and activity, delivering diverse diaryl ethers in excellent yields (90–98%) under mild conditions. This study highlights GO-CPTMS@Pd-TKHPP as a practical and green platform for scalable diaryl ether synthesis.
Title: Design of a Robust Graphene Oxide–Palladium Porphyrin Catalyst for the Selective and Sustainable Synthesis of Diaryl Ethers
Description:
Abstract
Diaryl ethers are valuable motifs in pharmaceuticals and natural products, motivating the search for efficient and sustainable synthesis methods.
We introduce a graphene oxide–supported palladium porphyrin nanocatalyst (GO-CPTMS@Pd-TKHPP) for the O-arylation of phenols.
The catalyst exhibited high stability and activity, delivering diverse diaryl ethers in excellent yields (90–98%) under mild conditions.
This study highlights GO-CPTMS@Pd-TKHPP as a practical and green platform for scalable diaryl ether synthesis.
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