4.6 Article

Ti3C2 nanosheets modified Zr-MOFs with Schottky junction for boosting photocatalytic HER performance

Journal

SOLAR ENERGY
Volume 188, Issue -, Pages 750-759

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.solener.2019.06.060

Keywords

Metal-organic frameworks; Ti3C2 nanosheets; Photocatalytic H-2-production; Schottky junction; Density functional theory

Categories

Funding

  1. National Natural Science Foundation of China [61604110, 51802234]
  2. China Postdoctoral Science Foundation [2015M572210]
  3. Natural Science Foundation of Hubei Provincial, China [2018CFC796, 2017CFC829, 2017CFB291]
  4. Department of Education Science Research Program of Hubei Province [Q20161110]
  5. Open Foundation of Key Laboratory of Green Chemical Process of Wuhan Institute of Technology [NRGCT201503]
  6. Training Programs of Innovation and Entrepreneurship for Undergraduates of Province [201510488022]
  7. Guidance Project of Scientific Research Plan of Hubei Provincial Department of Education [B2017014]
  8. Key Projects of Scientific Research Program of Hubei Provincial Department of Education [D20171505]

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As newly-developing non-noble metallic co-catalysts, MXenes have attracted intensive attention as an ideal candidate to promote the photocatalytic H-2-production activity. In this study, Ti3C2 nanosheets prepared by intercalation were further attached to porous MOFs (UiO-66-NH2) via one-pot hydrothermal method to form face-to-face intimate contact. The obtained TU10 presented the highest photocatalytic H-2-evolution rates in TU series, exceeding that of pure UiO-66-NH2 by approximately 8 times. The speculation revolving about enhanced photocatalytic H-2-production performance was proposed as the presence of exposed active sites at the edge of Ti3C2 nanosheets and spatial separation and transfer of charge carriers introduced by the Schottky junction at TU series interface, which accumulated the photo-induced electrons on the surface of Ti3C2 nanosheets and improved its electron-donating ability. The DFT calculations revealed that O-terminated Ti3C2 possessed the most positive Fermi level and the lowest Gibbs free energy (vertical bar Delta GH*vertical bar = 0.08 approximate to 0). This work may provide new insights for constructing MXenes/MOFs structure based on Schottky junction effect to achieve high photocatalytic H-2-production performance.

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