| Literature DB >> 33909930 |
Jianxin Kang1, Yan Zhang1, Ziwei Chai2,3, Xiaoyi Qiu1, Xingzhong Cao4, Peng Zhang4, Gilberto Teobaldi5,6, Li-Min Liu3, Lin Guo1.
Abstract
Although oxygen vacancies (Ov s) play a critical role for many applications of metal oxides, a controllable synthetic strategy for anisotropic Ov s remains a great challenge. Here, a novel strategy is proposed to achieve the regional dual structure with anisotropic Ov s at both the surface and in the interior of TiO2 by constructing amorphous domains. The as-prepared black TiO2 with amorphous domains exhibits superior activity in degrading rhodamine B (RhB) solutions, which can instantly decompose RhB with just a shake. First-principle simulations reveal that subsurface Ov s in TiO2 are energetically favored, resulting in the formation of amorphous domains in the interior region via diffusion of surface-formed Ov s into the subsurface. The stable Ov -induced amorphous domains in TiO2 with enhanced catalytic performances provide a scalable strategy to practical Ov engineering in functional metal oxides.Entities:
Keywords: amorphous domains; black titanium dioxide; defect engineering; oxygen vacancies
Year: 2021 PMID: 33909930 DOI: 10.1002/adma.202100407
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849