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A novel Au/electroactive poly(amic acid) composite as an effective catalyst for p-nitrophenol reduction.


ABSTRACT: A Au/electroactive poly(amic acid) (Au/EPAA) composite was synthesized and characterized, and its catalytic ability was evaluated. EPAA was synthesized via oxidative coupling polymerization and Au nanoparticles were anchored to the amino and carboxyl groups. The Au/EPAA composite was characterized via X-ray diffraction analysis, X-ray photoelectron spectroscopy, and scanning electron microscopy, which confirmed that the Au nanoparticles were well dispersed on the EPAA surface. p-Nitrophenol was reduced to p-aminophenol within 5 min at room temperature, with a rate constant of 0.84 min-1. Cycling measurements showed that the Au/EPAA composite achieved higher than 92% conversion. The Au/EPAA composite showed excellent performance and stability as a catalyst for the reduction of p-nitrophenol to p-aminophenol.

SUBMITTER: Lai GH 

PROVIDER: S-EPMC9042354 | biostudies-literature | 2021 Oct

REPOSITORIES: biostudies-literature

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A novel Au/electroactive poly(amic acid) composite as an effective catalyst for <i>p</i>-nitrophenol reduction.

Lai Guan-Hui GH   Huang Tsao-Cheng TC   Huang Bi-Sheng BS   Chou Yi-Chen YC  

RSC advances 20211020 54


A Au/electroactive poly(amic acid) (Au/EPAA) composite was synthesized and characterized, and its catalytic ability was evaluated. EPAA was synthesized <i>via</i> oxidative coupling polymerization and Au nanoparticles were anchored to the amino and carboxyl groups. The Au/EPAA composite was characterized <i>via</i> X-ray diffraction analysis, X-ray photoelectron spectroscopy, and scanning electron microscopy, which confirmed that the Au nanoparticles were well dispersed on the EPAA surface. <i>p  ...[more]

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