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Synthesis of high performance Ni3C-Ni decorated thermally expanded reduced graphene oxide (TErGO/Ni3C-Ni) nanocomposite: A stable catalyst for reduction of Cr(VI) and organic dyes.

Authors :
Akram, Muhammad Yasir
Hameed, Muhammad Usman
Akhtar, Naseem
Ali, Safdar
Maitlo, Inamullah
Zhu, Xiao-Qun
Jun, Nie
Source :
Journal of Hazardous Materials. Mar2019, Vol. 366, p723-731. 9p.
Publication Year :
2019

Abstract

Graphical abstract Highlights • Synthesis of stable and porous thermally expended reduced-graphene oxide (TErGO/Ni 3 C-Ni) nanocomposite. • High performance reduction of Cr(Ⅵ) via TErGO/Ni 3 C-Ni nanocatalyst. • Fast reduction of dyes with the help of TErGO/Ni 3 C-Ni nanocatalyst. Abstract A high performance thermally expanded reduced graphene oxide (TErGO) nanocomposite decorated with Ni 3 C-Ni nanoparticles (TErGO/Ni 3 C-Ni) has been successfully synthesized by using a facile and eco-friendly approach. The morphology, textural features, surface composition and stability of TErGO/Ni 3 C-Ni nanocomposite are investigated by various physicochemical characterizations which revealed the uniform dispersion of crystalline metal nanoparticles inside TErGO matrix. The composite has been exhibited a large surface area and pore volume of 121 m2 g−1 and 0.791 cm3 g−1, respectively. The TErGO/Ni 3 C-Ni exhibited remarkable catalytic performance surpassing most metal-based catalysts with various kind of support matrices reported in recent literature. The reduction of Cr(Ⅵ) to Cr(Ⅲ) was achieved within 1 min with an excellent rate constant of 2.74 min−1 and phenomenally higher specific removal rate (SRR) of 0.29 mg Cr(VI) min−1. mg−1 of TErGO/Ni 3 C-Ni. While it also proved an excellent reducing catalyst for organic dyes via NaBH 4 with full reduction achieved within 30 s. Moreover, as prepared nanocatalyst possesses excellent stability and recyclability with easy magnetic separation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03043894
Volume :
366
Database :
Academic Search Index
Journal :
Journal of Hazardous Materials
Publication Type :
Academic Journal
Accession number :
134734484
Full Text :
https://doi.org/10.1016/j.jhazmat.2018.12.015