J. Mater. Sci. Technol. ›› 2018, Vol. 34 ›› Issue (6): 899-904.DOI: 10.1016/j.jmst.2017.11.054
• Orginal Article • Next Articles
Fengren Cao, Wei Tian, Liang Li*()
Received:
2017-11-11
Revised:
2017-11-20
Accepted:
2017-11-20
Online:
2018-06-10
Published:
2018-06-05
Contact:
Li Liang
Fengren Cao, Wei Tian, Liang Li. Ternary non-noble metal zinc-nickel-cobalt carbonate hydroxide cocatalysts toward highly efficient photoelectrochemical water splitting[J]. J. Mater. Sci. Technol., 2018, 34(6): 899-904.
Fig. 1. SEM images of (a) the pristine TiO2 and (b) hybrid ZNC-CH/TiO2 nanorod arrays with the ZNC-CH reaction time of 20 min, and (c) corresponding XRD patterns. (d) TEM image of ZNC-CH/TiO2 hybrid nanostructure. (e) HRTEM and (f) SAED images of a single ZNC-CH nanosheet, indicating the polycrystalline characteristics.
Fig. 3. (a) J-V curves for the pristine TiO2 and ZNC-CH/TiO2 hybrid nanostructures with different ZNC-CH reaction time. (b) Long time transient J-t curves of ZNC-CH/TiO2 hybrid nanostructure with the ZNC-CH reaction time of 20 min at 1.23 V vs. RHE. (c) IPCE spectra of TiO2 and ZNC-CH/TiO2 nanostructures with the ZNC-CH reaction time of 20 min. (d) Solar-to-hydrogen conversion efficiency (η) of TiO2 and ZNC-CH/TiO2 hybrid nanostructures.
Fig. 4. (a) J-V curves for the pristine TiO2 and NiCo-CH/TiO2 hybrid nanostructures with different reaction time. (b) Long time transient J-t curves of NiCo-CH/TiO2 hybrid nanostructure with the reaction time of 20 min at 1.23 V bias vs. RHE.
Fig. 5. Nyquist plots of TiO2 and ZNC-CH/TiO2 hybrid nanostructures with different reaction time under light illumination at a bias voltage of 1.23 V vs. RHE.
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