MoS2/Graphene Composite Paper for Sodium-Ion Battery Electrodes
Композитная бумага из MoS2 и графена для электродов натрий-ионных аккумуляторов
2014-01-21
SCID: 54.1/27wh9v35
Discuss with AI
MoS2/graphene compositeelectrochemical performancereduced graphene oxidesodium-ion battery electrodesvacuum filtration
Figures from the paper
Abstract (AI)
We study the synthesis and electrochemical and mechanical performance of layered free-standing papers composed of acid-exfoliated few-layer molybdenum disulfide (MoS2) and reduced graphene oxide (rGO) flakes for use as a self-standing flexible electrode in sodium-ion batteries. Synthesis was achieved through vacuum filtration of homogeneous dispersions consisting of varying weight percent of acid-treated MoS2 flakes in GO in DI water, followed by thermal reduction at elevated temperatures. The electrochemical performance of the crumpled composite paper (at 4 mg cm(-2)) was evaluated as counter electrode against pure Na foil in a half-cell configuration. The electrode showed good Na cycling ability with a stable charge capacity of approximately 230 mAh g(-1) with respect to total weight of the electrode with Coulombic efficiency reaching approximately 99%. In addition, static uniaxial tensile tests performed on crumpled composite papers showed high average strain to failure reaching approximately 2%.
Key Findings
1
At a 4 mg cm−2 loading, the crumpled electrode delivered a stable charge capacity of approximately 230 mAh g−1 based on total electrode mass.
2
Free-standing, flexible MoS2/rGO composite papers were fabricated by vacuum filtration of homogeneous dispersions followed by thermal reduction.
3
The composite papers function as self-standing sodium-ion battery electrodes without requiring a separate current collector.
4
The crumpled composite papers exhibited an average tensile strain to failure of approximately 2%, demonstrating mechanical flexibility.
5
The electrode achieved a Coulombic efficiency of approximately 99% during sodium cycling against a sodium-metal counter electrode.
Research Object
Layered free-standing MoS2/reduced graphene oxide composite papers used as flexible sodium-ion battery electrodes
Research Subject
Electrochemical sodium-storage performance and mechanical tensile behavior, including cycling capacity, Coulombic efficiency, and strain to failure
Publication Details
Publication Date
2014-01-21
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest