JOURNAL ARTICLE

Thin MoS2 Nanoflakes Encapsulated in Carbon Nanofibers as High-Performance Anodes for Lithium-Ion Batteries

Chenyang ZhaoJunhua KongXiayin YaoXiaosheng TangYuliang DongSi Lei PhuaXuehong Lu

Year: 2014 Journal:   ACS Applied Materials & Interfaces Vol: 6 (9)Pages: 6392-6398   Publisher: American Chemical Society

Abstract

In this work, highly flexible MoS2-based lithium-ion battery anodes composed of disordered thin MoS2 nanoflakes encapsulated in amorphous carbon nanofibrous mats were fabricated for the first time through hydrothermal synthesis of graphene-like MoS2, followed by electrospinning and carbonization. X-ray diffraction as well as scanning and transmission electron microscopic studies show that the as-synthesized MoS2 nanoflakes have a thickness of about 5 nm with an expanded interlayer spacing, and their structure and morphology are well-retained after the electrospinning and carbonization. At relatively low MoS2 contents, the nanoflakes are dispersed and well-embedded in the carbon nanofibers. Consequently, excellent electrochemical performance, including good cyclability and high rate capacity, was achieved with the hybrid nanofibrous mat at the MoS2 content of 47%, which may be attributed to the fine thickness and multilayered structure of the MoS2 sheets with an expanded interlayer spacing, the good charge conduction provided by the high-aspect-ratio carbon nanofibers, and the robustness of the nanofibrous mat.

Keywords:
Materials science Electrospinning Nanofiber Carbonization Anode Graphene Carbon nanofiber Chemical engineering Lithium (medication) Electrochemistry Nanotechnology Scanning electron microscope Transmission electron microscopy Amorphous carbon Lithium-ion battery Amorphous solid Composite material Carbon fibers Carbon nanotube Electrode Battery (electricity) Composite number Polymer

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Citation History

Topics

Advancements in Battery Materials
Physical Sciences →  Engineering →  Electrical and Electronic Engineering
Supercapacitor Materials and Fabrication
Physical Sciences →  Materials Science →  Electronic, Optical and Magnetic Materials
MXene and MAX Phase Materials
Physical Sciences →  Materials Science →  Materials Chemistry
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