61 / 2019-10-16 20:13:11
MODULATING OXYGEN VACANCIES IN SN-DOPED HEMATITE FILM GROWN ON SILICON MICROWIRES FOR PHOTOELECTROCHEMICAL WATER OXIDATION
light-driven water splitting, dual-absorber photoanode, hematite, silicon microwires, oxygen vacancies
Abstract Pending
忠源 周 / 苏州大学
绍龙 吴 / 苏州大学
琳玲 秦 / 苏州大学
李 亮 / 苏州大学
刘晶 李 / 苏州大学
孝峰 李 / 苏州大学
Dual-absorber photoelectrodes are attractive candidates for solar water splitting due to their broadened absorption spectrum and improved photovoltage compared to single-absorber systems. Here, we present a hybrid photoanode constructed by growing hematite (α-Fe2O3) film on silicon microwires (SiMWs); the film is demonstrated to be promising for photoelectrochemical (PEC) water splitting. We simultaneously introduce extrinsic (i.e., Sn) and intrinsic (i.e., oxygen vacancy) dopants, which lead to an increase of the photocurrent from 0.89 to 3.12 mA/cm2 at 1.23 VRHE (under AM 1.5G irradiation) and a cathodical shift of 0.7 V in the starting potential of the anode current along with a relatively high photocurrent at a low potential (e.g., 0.33 mA/cm2 at 0.45 VRHE). Moreover, the relative concentration of the oxygen vacancies in α-Fe2O3 can be modulated, and the corresponding influence on the PEC performance is investigated in detail.
Important Date
  • Conference Date

    Nov 15

    2019

    to

    Nov 18

    2019

  • Oct 20 2019

    Draft paper submission deadline

  • Nov 18 2019

    Registration deadline

Organized By
John Wiley & Sons Inc. publishing group
Institute of New Materials and Industrial Technology, WZU
College of Chemistry and Materials Engineering, WZU
《Carbon Energy》
Contact Information