A chemically activated graphene-encapsulated LiFePO4 composite for high-performance lithium ion batteries.
نویسندگان
چکیده
A composite of modified graphene and LiFePO4 has been developed to improve the speed of charging-discharging and the cycling stability of lithium ion batteries using LiFePO4 as a cathode material. Chemically activated graphene (CA-graphene) has been successfully synthesized via activation by KOH. The as-prepared CA-graphene was mixed with LiFePO4 to prepare the composite. Microscopic observation and nitrogen sorption analysis have revealed the surface morphologies of CA-graphene and the CA-graphene/LiFePO4 composite. Electrochemical properties have also been investigated after assembling coin cells with the CA-graphene/LiFePO4 composite as a cathode active material. Interestingly, the CA-graphene/LiFePO4 composite has exhibited better electrochemical properties than the conventional graphene/LiFePO4 composite as well as bare LiFePO4, including exceptional speed of charging-discharging and excellent cycle stability. That is because the CA-graphene in the composite provides abundant porous channels for the diffusion of lithium ions. Moreover, it acts as a conducting network for easy charge transfer and as a divider, preventing the aggregation of LiFePO4 particles. Owing to these properties of CA-graphene, LiFePO4 could demonstrate enhanced and stably long-lasting electrochemical performance.
منابع مشابه
Enhancement In Electrochemical Performance Of Advanced Battery Electrodes Using Carbon- Nanomaterial Composites
ENHANCEMENT IN ELECTROCHEMICAL PERFORMANCE OF LiFePO4-CARBONNANO COMPOSITE MATERIALS FOR LITHIUM ION BATTERIESbyKULWINDER S. DHINDSAMay 2015Advisor:Dr. Zhixian ZhouCo Advisors: Dr. Ratna Naik and Dr. Gholam-Abbas NazriMajor:Physics (Condensed Matter)Degree:Doctor of PhilosophyLiFePO4 has attracted great interest as a cathode material for lithi...
متن کاملTowards High Capacity Li-ion Batteries Based on Silicon-Graphene Composite Anodes and Sub-micron V-doped LiFePO4 Cathodes
Lithium iron phosphate, LiFePO4 (LFP) has demonstrated promising performance as a cathode material in lithium ion batteries (LIBs), by overcoming the rate performance issues from limited electronic conductivity. Nano-sized vanadium-doped LFP (V-LFP) was synthesized using a continuous hydrothermal process using supercritical water as a reagent. The atomic % of dopant determined the particle shap...
متن کاملA porous LiFePO4 and carbon nanotube composite.
A novel composite electrode structure with highly-conductive 3D nanotube networks superimposed into interlaced porous LiFePO(4) media was designed and realized via an in situ sol-gel process, yielding a high-performance multidimensional composite cathode for high-energy and high-power lithium-ion batteries.
متن کاملComposites of Graphene and Encapsulated Silicon for Practically Viable High-Performance Lithium-Ion Batteries
A facile and scalable approach to synthesize silicon composite anode was developed by encapsulating Si particles via in-situ polymerization and carbonization of phloroglucinolformaldehyde gel, followed by incorporation of graphene nanoplatelets. Attributed to the improved structural integrity, a high packing density and an intimate electrical contact consolidated by the conductive networks, the...
متن کاملDesired crystal oriented LiFePO4 nanoplatelets in situ anchored on a graphene cross-linked conductive network for fast lithium storage.
Electron transfer and lithium ion diffusion rates are the key factors limiting the lithium ion storage in anisotropic LiFePO4 electrodes. In this work, we employed a facile solvothermal method to synthesize a "platelet-on-sheet" LiFePO4/graphene composite (LFP@GNs), which is LiFePO4 nanoplatelets in situ grown on graphene sheets with highly oriented (010) facets of LiFePO4 crystals. Such a two-...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Nanoscale
دوره 5 18 شماره
صفحات -
تاریخ انتشار 2013