Pd nanospheres decorated reduced graphene oxide with multi-functions: Highly efficient catalytic reduction and ultrasensitive sensing of hazardous 4-nitrophenol pollutant

[Display omitted] •Pd-GA/RGO catalysts were successfully synthesized by a simple chemical reduction method.•Pd-GA/RGO catalysts show excellent fast catalytic activity (5min) towards the reduction of 4-NP to 4-AP.•The developed sensor showed a wide linear range of 2–80pM with a low detection limit of...

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Veröffentlicht in:Journal of hazardous materials 2017-07, Vol.333, p.54-62
Hauptverfasser: Vilian, A.T. Ezhil, Choe, Sang Rak, Giribabu, Krishnan, Jang, Sung-Chan, Roh, Changhyun, Huh, Yun Suk, Han, Young-Kyu
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Sprache:eng
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Zusammenfassung:[Display omitted] •Pd-GA/RGO catalysts were successfully synthesized by a simple chemical reduction method.•Pd-GA/RGO catalysts show excellent fast catalytic activity (5min) towards the reduction of 4-NP to 4-AP.•The developed sensor showed a wide linear range of 2–80pM with a low detection limit of 9fM. We illustrate a facile approach for in situ synthesis of Pd-gum arabic/reduced graphene oxide (Pd-GA/RGO) using GA as the reducing agent, which favors the instantaneous reduction of both Pd ions and GO into Pd nanoparticles (NPs) and RGO. From the morphological analysis of Pd-GA/RGO, we observed highly dispersed spherical 5nm Pd NPs decorated over RGO. The as-synthesized Pd-GA/RGO composite was employed for the catalytic reduction and the electrochemical detection of 4-nitrophenol (4-NP), respectively. The catalytic reduction of 4-NP was highly pronounced for Pd-GA/RGO (5min) when compared to Pd NPs (140min) and Pd/RGO (36min). This enhanced catalytic activity was attributed to the synergistic effect of Pd NPs and the presence of various functional groups of GA. Significantly, the fabricated sensor offered a low detection limit (9fM) with a wider linear range (2–80 pM) and long-term stability. The simple construction technique, high sensitivity, and long-term stability with acceptable accuracy in wastewater samples were the main advantages of the developed sensor. The results indicated that the as-prepared Pd-GA/RGO exhibited better sensing ability than the other graphene-based modified electrodes. Therefore, the proposed sensor can be employed as a more convenient sensing platform for environmental and industrial pollutants.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2017.03.015