| Literature DB >> 23982312 |
Tai Sun1, Zheye Zhang, Junwu Xiao, Chen Chen, Fei Xiao, Shuai Wang, Yunqi Liu.
Abstract
We report a facile and green method to synthesize a new type of catalyst by coating Pd nanoparticles (NPs) on reduced graphene oxide (rGO)-carbon nanotube (CNT) nanocomposite. An rGO-CNT nanocomposite with three-dimensional microstructures was obtained by hydrothermal treatment of an aqueous dispersion of graphene oxide (GO) and CNTs. After the rGO-CNT composites have been dipped in K₂PdCl₄ solution, the spontaneous redox reaction between the GO-CNT and PdCl₄(2-) led to the formation of nanohybrid materials consisting rGO-CNT decorated with 4 nm Pd NPs, which exhibited excellent and stable catalytic activity: the reduction of 4-nitrophenol to 4-aminophenol using NaBH4 as a catalyst was completed in only 20 s at room temperature, even when the Pd content of the catalyst was 1.12 wt%. This method does not require rigorous conditions or toxic agents and thus is a rapid, efficient, and green approach to the fabrication of highly active catalysts.Entities:
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Year: 2013 PMID: 23982312 PMCID: PMC3755291 DOI: 10.1038/srep02527
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematic illustration of the synthesis of the Pd–rGO–CNT composite.
Figure 2SEM and TEM images of Pd–rGO–CNT composite.
(a) SEM image of Pd–rGO–CNT hybrid. (b–d) TEM images of Pd–rGO–CNT hybrid. (e) The selected-area electron diffraction (SAED) pattern and (f) XRD patterns of Pd–rGO–CNT composite.
Figure 3(a) X-ray photoemission spectroscopy (XPS) profiles of GO–CNT, rGO–CNT, and Pd–rGO–CNT hybrid samples. (b) Curve fit of the C1s peak of GO–CNT. (c) Curve fit of the C1s peak of rGO–CNT. (d) Curve fit of C1s peak of Pd–rGO–CNT.
Figure 4(a) UV-Vis spectra of 4-NP reduction (i) before and (ii) 20 s after the addition of the Pd–rGO–CNT composite. (b) The stability of the catalyst during 20 cycles of the same reduction reaction.
Comparison of the catalytic recycling stabilities of composites
| Cycle | |||||
|---|---|---|---|---|---|
| Type of catalysts | 1st | 2nd | 3rd | 4th | 5th |
| Pd–rGO | 30 s | 120 s | 180 s | 190 s | 210 s |
| Pd–rGO–CNT | 20 s | 30 s | 35 s | 40 s | 40 s |
| Au/C core–shell | 300 s | 300 s | 300 s | 300 s | 300 s |
| Au/SiO2 microsphere | 1 h | _ | _ | _ | _ |