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Highly active Cu-embedded in magnetic carbon nanofibers for the reduction of 4-nitrophenol
Journal article   Peer reviewed

Highly active Cu-embedded in magnetic carbon nanofibers for the reduction of 4-nitrophenol

Ching Shiun Chen, Tse Ching Chen, Kai Lin Chiu, Cheng Rong Hsing, Li Yu Wang, Chia Min Yang, Chih Wen Pao and Chi Liang Chen
Chemical engineering journal (Lausanne, Switzerland : 1996), Vol.505, p.159103
01/02/2025

Abstract

4-nitrophenol reduction atomic Cu catalyst Carbon nanofibers fixation hydrogenation
This study introduces a novel approach for the catalytic reduction of 4-nitrophenol (4-NP) to 4-aminophenol (4-AP) using Cu embedded in magnetic carbon nanofibers (CNFs) derived from CO hydrogenation. The synthesis involves CO hydrogenation over a Ni-Na/Al O catalyst to produce CNFs, which support Cu atoms without requiring an external reductant. Low Cu loadings (0.25–1.0 wt%) effectively aggregate at the atomic level, enhancing catalytic activity through interactions with oxygen-containing groups (–COOH and –OH) on CNFs. Characterization of the Cu embedded in CNFs (Cu /CNFs) showed that despite a slight reduction in surface area with increased Cu loading, the materials maintained robust catalytic properties and magnetic characteristics, aiding in the easy post-reaction separation from aqueous solutions. Catalytic tests demonstrated that Cu /CNFs surpass the efficiency of traditional noble metal catalysts, following pseudo-first-order kinetics. The character of positive charge of Cu atoms could significantly enhance the adsorption efficiency of 4-NP molecules on Cu /CNFs including adsorption amount and adsorption rate.

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