| Literature DB >> 26601227 |
Jianwei Miao1, Fang-Xing Xiao1, Hong Bin Yang1, Si Yun Khoo1, Jiazang Chen1, Zhanxi Fan2, Ying-Ya Hsu3, Hao Ming Chen3, Hua Zhang2, Bin Liu1.
Abstract
A unique functional electrode made of hierarchalEntities:
Keywords: Carbon Fiber Cloth; Flexible Electrodes; Hierarchical Ni-Mo-S Nanosheets; Hydrogen Generation; Neutral Electrolyte
Year: 2015 PMID: 26601227 PMCID: PMC4643797 DOI: 10.1126/sciadv.1500259
Source DB: PubMed Journal: Sci Adv ISSN: 2375-2548 Impact factor: 14.136
Fig. 1Synthesis processes of MoS2/C and Ni-Mo-S/C.
(A) Schematic illustration of syntheses of MoS2 and Ni-Mo-S on carbon fiber cloth. (B) Photographic image of freshly prepared Ni-Mo-S/C (1:1).
Fig. 2Low-magnification SEM images.
(A) Bare carbon fiber cloth. (B) NiS/C. (C) Ni-Mo-S/C (3:1). (D) Ni-Mo-S/C (1:1). (E) Ni-Mo-S/C (1:3). (F) MoS2/C. All scale bars, 2 μm.
Fig. 3High-magnification SEM images.
(A) Ni-Mo-S/C (3:1). (B) Ni-Mo-S/C (1:1). (C) Ni-Mo-S/C (1:3). (D) MoS2/C. All scale bars, 500 nm.
Fig. 4TEM images.
(A and B) Low-magnification TEM images of (A) MoS2/C and (B) Ni-Mo-S/C (1:1). (C and D) HRTEM images of (C) MoS2/C and (D) Ni-Mo-S/C (1:1). Insets: Corresponding cross-sectional HRTEM images. Dashed circles in (D) indicate the structure defects of Ni-Mo-S/C (1:1).
Fig. 5XRD analysis.
XRD pattern of Ni-Mo-S/C (1:1) after subtraction of carbon fiber cloth signal. Inset: Original XRD pattern of Ni-Mo-S/C (1:1). a.u., arbitrary unit.
Fig. 6Raman spectroscopy.
Raman spectra of Ni-Mo-S/C (1:1) and MoS2/C. Inset: Schematic illustration of and A1 vibrational modes in layered 2H-MoS2.
Fig. 7XPS.
(A) Survey XPS spectrum of Ni-Mo-S/C (1:1). (B to D) High-resolution scans of (B) Mo 3d, (C) S 2p, and (D) Ni 2p.
Fig. 8Electrochemical performances.
(A) Polarization curves of carbon fiber cloth, NiS/C, MoS2/C, and different Ni-Mo-S/C in neutral electrolyte. GSA, geometric surface area. (B) Corresponding Tafel plots obtained using slow-scan rate polarization curves. (C) Electrochemical impedance spectra of different electrodes at −0.3 V versus RHE. Inset: Equivalent circuit used for data analyses. CPE, constant-phase element; ZW, Warburg impedance. (D) Plot of charge transport resistance of different samples.
Calculation of actual catalyst loadings in MoS2/C, NiS/C, and different Ni-Mo-S/C samples.
| MoS2 | 1.64 | 1.56 | 1.63 | 1.61 | 0.04 |
| Ni-Mo-S/C (Ni/Mo, 1:3) | 0.96 | 0.84 | 0.87 | 0.89 | 0.06 |
| Ni-Mo-S/C (Ni/Mo, 1:1) | 0.52 | 0.54 | 0.5 | 0.52 | 0.02 |
| Ni-Mo-S/C (Ni/Mo, 3:1) | 0.35 | 0.31 | 0.3 | 0.32 | 0.03 |
| NiS | 0.44 | 0.37 | 0.42 | 0.41 | 0.04 |
Fig. 9Electrochemical hydrogen evolution tests.
(A) Onset comparison between MoS2/C and Ni-Mo-S/C (1:1). (B) Stability tests of Ni-Mo-S/C (1:1) and MoS2/C in neutral electrolyte. (C) LSV curves of Ni-Mo-S/C (1:1) before and after stability tests. (D) Comparison of the detected amount of evolved H2 and the theoretical value in Faraday efficiency measurement.
Preparation of MoS2, NiS, and Ni-Mo-S on carbon fiber cloth.
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