| Literature DB >> 30759762 |
Guangzhao Wang1, Feng Zhou2, Binfang Yuan3, Shuyuan Xiao4, Anlong Kuang5, Mingmin Zhong6, Suihu Dang7, Xiaojiang Long8, Wanli Zhang9.
Abstract
By means of a hybrid density functional, we comprehensively investigate the energetic, electronic, optical properties, and band edge alignments of two-dimensional (2D) CdS/g-C 3 N 4 heterostructures by considering the effect of biaxial strain and pH value, so as to improve the photocatalytic activity. The results reveal that a CdS monolayer weakly contacts with g-C 3 N 4 , forming a type II van der Waals (vdW) heterostructure. The narrow bandgap makes CdS/g-C 3 N 4 suitable for absorbing visible light and the induced built-in electric field between the interface promotes the effective separation of photogenerated carriers. Through applying the biaxial strain, the interface adhesion energy, bandgap, and band edge positions, in contrast with water, redox levels of CdS/g-C 3 N 4 can be obviously adjusted. Especially, the pH of electrolyte also significantly influences the photocatalytic performance of CdS/g-C 3 N 4 . When pH is smaller than 6.5, the band edge alignments of CdS/g-C 3 N 4 are thermodynamically beneficial for oxygen and hydrogen generation. Our findings offer a theoretical basis to develop g-C 3 N 4 -based water-splitting photocatalysts.Entities:
Keywords: CdS/g-C3N4; hybrid density functional; photocatalysis; strain-tunable; water splitting
Year: 2019 PMID: 30759762 PMCID: PMC6409938 DOI: 10.3390/nano9020244
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076
Figure 1(a) Crystal structures of CdS single-layer and g-CN. DOS and PDOS of (b) CdS single-layer and (c) g-CN.
Figure 2Top and side views of three possible stackings of CdS/g-CN heterostructures.
Figure 3Band edge alignments for CdS single-layer, g-CN, CdS/g-CN (i), (ii), and (iii) in contrast with water redox levels.
Figure 4(a) Varied interface adhesion energies () and bandgaps () of CdS/g-CN heterostructures with different biaxial strains. (b) Band edge alignments of CdS/g-CN heterostructures with different biaxial strains. The red and blue horizontal lines are the water redox potentials as pH = 0 and pH = 7, respectively.
Figure 5(a) DOS, PDOS and (b) band structures of CdS/g-CN heterostructure.
Figure 6Partial charge densities of (a) CBM, (b) VBM, (c) the charge density difference, and (d) potential drop across the interface of CdS/g-CN heterostructure.
Figure 7Absorption spectra of pristine g-CN and CdS/g-CN heterostructure.