| Literature DB >> 24514577 |
Zheye Zhang1, Fei Xiao1, Jiangbo Xi1, Tai Sun1, Shuang Xiao1, Hairong Wang2, Shuai Wang1, Yunqi Liu3.
Abstract
Double-shelled hollow carbon spheres with reduced graphene oxide (RGO) as inner shell and carbon (C) layer as outer shell have been successfully designed and prepared. This tailor-making structure acts as an excellent capsule for encapsulating with ultrafine Pd nanoparticles (Pd NPs), which could effectively prevent Pd NPs from aggregation and leaching. As a result, the as-obtained RGO@Pd@C nanohybid exhibits superior and stable catalytic performance. With the aid of RGO@Pd@C, the reduction reaction of 4-nitrophenol (4-NP) to 4-aminophenol with NaBH4 as reducing agent can be finished within only 30 s, even the content of Pd is as low as 0.28 wt%. As far as we know, RGO@Pd@C is one of the most effective catalyst for 4-NP reducing reaction up to now.Entities:
Year: 2014 PMID: 24514577 PMCID: PMC3920280 DOI: 10.1038/srep04053
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Schematics of the synthesis of RGO@Pd@C hollow sphere.
Figure 2TEM images of (A) SiO2@GO nanospheres, (B) SiO2@ GO@Pd nanospheres, (C) SiO2@RGO@Pd@C nanospheres, (D, E) hollow RGO@Pd@C nanospheres and (F) HRTEM image of RGO@Pd@C.
Figure 3(A) and (B) SEM images of RGO@Pd@C hollow spheres with different magnifications. (C) The selected-area electron diffraction (SAED) pattern and (D) XPS spectrum of Pd 3d of RGO@Pd@C.
Figure 4(A) UV/Vis spectra of 4-NP reduction reaction in the absence and presence of RGO@Pd@C catalyst. Insert: color changes of the conversion of 4-NP. (B) The stability of catalyst by performing the same reduction reaction with 10 cycles.
Comparison for the reduction of 4-NP with different catalysts
| Catalyst | Mass of catalyst (mg) | Amount of 4-NP (mmol) | Amount of NaBH4 (mmol) | Metal size (nm) | Metal content (wt.%) | Conversion time (min) | TOF (mmol 4-NP/(mmol metal min) | Reference |
|---|---|---|---|---|---|---|---|---|
| RGO@Pd@C | 5 | 3 × 10−4 | 3 × 10−2 | 4 | 0.28 | 0.5 | 4.56 | Our work |
| Au@C | 5 | 3 × 10−4 | 3 × 10−2 | 15 | NA | 5 | NA | |
| Ag/Carbon nanofiber | 1 | 3.6 × 10−3 | 15 × 10−2 | 28.1 | 8.4 | 8 | 0.58 | |
| Au/Graphene | 0.1 | 2.8 × 10−4 | 2 × 10−2 | 14.6 | 24 | 12 | 0.19 | |
| Au@SiO2 | NA | 3.4 × 10−3 | 1.2 | 104 | NA | 60 | NA |