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Facile Synthesis of Palladium-Nanoparticle-Embedded N-Doped Carbon Fibers for Electrochemical Sensing

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posted on 2024-11-16, 05:05 authored by Kyubin Shim, Zhongli Wang, Tasnima Haque Mou, Yoshio BandoYoshio Bando, Abdulmohsen Alshehri, Jeonghun Kim, Md Shahriar Hossain, Yusuke Yamauchi, Jung Ho KimJung Ho Kim
2018 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim. In recent years, there have been many studies on metal/carbon hybrid materials for electrochemical applications. However, reducing the metal content in catalysts is still a challenge. Here, a facile synthesis of palladium (Pd) nanoparticle-embedded N-doped carbon fibers (Pd/N-C) through electropolymerization and reduction methods is demonstrated. The as-prepared Pd/N-C contains only 1.5wt% Pd. Under optimal conditions, bisphenolA is detected by using amperometry in two dynamic ranges from 0.1 to 10μm and from 10 to 200μm, and the obtained correlation coefficients are close to 0.9836 and 0.9987, respectively. The detection limit (DL) for bisphenolA is determined to be 29.44 (±0.77)nm.

Funding

All-Metal Nanoporous Materials as Highly Active Electrocatalysts

Australian Research Council

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Citation

Shim, K., Wang, Z., Mou, T. Haque., Bando, Y., Alshehri, A. Ali., Kim, J., Hossain, M. A., Yamauchi, Y. & Kim, J. Ho. (2018). Facile Synthesis of Palladium-Nanoparticle-Embedded N-Doped Carbon Fibers for Electrochemical Sensing. ChemPlusChem, 83 (5),

Journal title

ChemPlusChem

Volume

83

Issue

5

Pagination

401-406

Language

English

RIS ID

127156

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