| Literature DB >> 26226386 |
Xin Li1, Jinying Zhang1, Rui Wang1, Hongyang Huang1, Chong Xie1, Zhihui Li1, Jun Li1, Chunming Niu1.
Abstract
Molybdenum disulfides and carbides are effective catalysts for hydrogenation and hydridesulfurization, where MoS2 nanostructures are also highly promising materials for lithium ion batteries. High surface-to-volume ratio and strong interactions with conducting networks are crucial factors for their activities. A new hybrid structure of multiwalled carbon nanotube (MWCNT) with alternate MoC nanoparticles and MoS2 nanosheets (MoS2 + MoC-MWCNT) has been synthesized by controlled carburization of core-shell MoS2-MWCNT hybrid nanotubes and demonstrated by HRTEM, FFT, XRD, and Raman scattering. The MoS2 nanosheets (∼10 nm) remain tightly connected to MWCNT surfaces with {001} planes in parallel to MWCNT walls and the highly crystallized α-MoC particles (∼10 nm) are adhered to MWCNTs at angles of 60-80° between {111} planes and MWCNT walls. The electrochemical performances of the hybrid structures have been demonstrated as anodes for lithium ion batteries to be significantly increased by breaking MoS2 nanotubes into nanosheets (patches) on MWCNT surfaces, especially at high current rates. The specific capacities of MoS2 + MoC-MWCNT sample with ∼23% MoS2 have been demonstrated to be higher than those of MoS2-MWCNTs containing ∼70% MoS2.Entities:
Keywords: Li-ion battery; Molybdenum disulfides; carbon nanotubes; hybrids; molybdenum carbides
Year: 2015 PMID: 26226386 DOI: 10.1021/acs.nanolett.5b01579
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189