| Literature DB >> 29292844 |
Chi Chen1,2, Xiuqiang Xie1, Babak Anasori1, Asya Sarycheva1, Taron Makaryan1, Mengqiang Zhao1, Patrick Urbankowski1, Ling Miao2, Jianjun Jiang2, Yury Gogotsi1.
Abstract
Two-dimensional (2D) heterostructured materials, combining the collective advantages of individual building blocks and synergistic properties, have spurred great interest as a new paradigm in materials science. The family of 2D transition-metal carbides and nitrides, MXenes, has emerged as an attractive platform to construct functional materials with enhanced performance for diverse applications. Here, we synthesized 2D MoS2 -on-MXene heterostructures through in situ sulfidation of Mo2 TiC2 Tx MXene. The computational results show that MoS2 -on-MXene heterostructures have metallic properties. Moreover, the presence of MXene leads to enhanced Li and Li2 S adsorption during the intercalation and conversion reactions. These characteristics render the as-prepared MoS2 -on-MXene heterostructures stable Li-ion storage performance. This work paves the way to use MXene to construct 2D heterostructures for energy storage applications.Entities:
Keywords: MXenes; density functional theory; heterostructures; lithium-ion batteries; molybdenum disulfide
Year: 2018 PMID: 29292844 DOI: 10.1002/anie.201710616
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336