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Boosting Solar Hydrogen Production of Molybdenum Tungsten Sulfide-Modified Si Micropyramids by Introducing Phosphate

机译:通过引入磷酸盐来提高钼硫化钨改性Si微嘧啶的太阳能氢气生产

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Si is regarded as a promising photocathode material for solar hydrogen evolution reaction (HER) because of its small band gap and highly negative conduction band edge. However, bare Si electrodes have high overpotential because of sluggish HER kinetics on the surface. In this study, molybdenum tungsten sulfide (MoS2-WS2) was decorated on Si photocathodes as the co-catalyst to accelerate HER kinetics. The catalytic performance of MoS2-WS2 was further enhanced by introducing phosphate materials. Phosphate-modified molybdenum tungsten sulfide (PO-MoWS) was deposited on Si photoabsorbers to provide an optimal current of -15.0 mA cm(-2) at 0 V. Joint characterizations of X-ray photoelectron and X-ray absorption spectroscopies demonstrated that the phosphate material dominantly coordinated with the WS2 component in PO-MoWS. Moreover, this phosphate material induced a large number of sulfur vacancies in the PO-MoWS/Si electrodes that contributed to the ideal catalytic activity. Herein, TiO2 thin films were prepared as the protective layer to improve the stability of photocathodes. The PO-MoWS/2 nm TiO2/Si electrode maintained 83.8% of the initial photocurrent after chronoamperometric measurement was performed for 8000 s.
机译:由于其小带隙和高负导通带边缘,Si被视为太阳氢进化反应(她)的有希望的光电阴极材料。然而,裸SI电极具有高的过电位,因为在表面上缓慢了她的动力学。在该研究中,硫化钨(MOS2-WS2)在Si光电晶体中装饰为辅助催化剂以加速她的动力学。通过引入磷酸盐材料进一步增强MOS2-WS2的催化性能。磷酸盐改性的钼硫化根(PO-Mows)沉积在Si光吸收器上,在0V下提供-15.0 mA cm(-2)的最佳电流。X射线光电子和X射线吸收光谱的关节表征证明了磷酸盐与PO-Mows中的WS2组分显着配位。此外,这种磷酸盐材料在Po-Mows / Si电极中诱导了大量硫空位,这有助于理想的催化活性。在此,制备TiO 2薄膜作为保护层以改善光电阴极的稳定性。 Po-Mows / 2nm TiO2 / Si电极保持83.8%的初始光电流,在时间测量为8000 s。

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