| Literature DB >> 27658968 |
Yi Feng1, Xin-Yao Yu1, Ungyu Paik1.
Abstract
Water splitting, an efficient approach forEntities:
Year: 2016 PMID: 27658968 PMCID: PMC5034270 DOI: 10.1038/srep34004
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Synthetic route.
Schematic synthesis route of N-doped graphene layers encapsulated NiFe alloy nanoparticles from NiFe-PBA for oxygen evolution reaction.
Figure 2TEM characterizations of S-NiFe-700@C.
TEM image (a) and HRTEM images (b,c) of S-NiFe-700@C. Inset of panel a: size distribution of S-NiFe-700@C. STEM (scanning transmission electron microscope) image (d) of S-NiFe-700@C and corresponding elemental mapping of Ni (e) and Fe (f).
Figure 3XPS spectrum of S-NiFe-700@C.
XPS survey (a) and high resolution spectra of Ni2p (b) Fe2p (c) C1s (d) and N1s (e); Raman spectrum of S-NiFe-700@C (f).
Figure 4OER performance of NiFe@C and Ni@C nanoparticles synthesized at 700 °C.
LSV curves (a) Tafel plots (inset of panel a), EIS Nyquist plots (b) and double layer capacitance (Cdl) (c) of S-NiFe-700@C, M-NiFe-700@C, B-NiFe-700@C and Ni@C; Stability test of S-NiFe-700@C at a scan rate of 50 mV s−1 (d).
Figure 5TEM characterizations of S-NiFe@700 after stability test.
TEM image (a) and HRTEM images (b,c) of S-NiFe-700@C after stability test; STEM image (d) of S-NiFe700@C after stability test and corresponding elemental mapping of Ni (e) and Fe (f).