Si/C composite lithium-ion battery anodes synthesized from coarse silicon and citric acid through combined ball milling and thermal pyrolysis
Silicon and related materials have recently received considerable attention as potential anodes in Li-ion batteries for their high theoretical specific capacities. To overcome the problem of volume variations during the Li insertion/extraction process, in this work, Si/C composites with low carbon c...
| Main Authors: | Gu, P., Cai, R., Zhou, Y., Shao, Zongping |
|---|---|
| Format: | Journal Article |
| Published: |
Pergamon
2010
|
| Online Access: | http://hdl.handle.net/20.500.11937/20493 |
Similar Items
A kinetic model for diffusion and chemical reaction of silicon anode lithiation in lithium ion batteries
by: Xie, Z., et al.
Published: (2016)
by: Xie, Z., et al.
Published: (2016)
Facile mechanochemical synthesis of nano SnO2/graphene composite from coarse metallic sn and graphite oxide: An outstanding anode material for lithium-ion batteries
by: Ye, F., et al.
Published: (2014)
by: Ye, F., et al.
Published: (2014)
Li4Ti5O12/Sn composite anodes for lithium-ion batteries: Synthesis and electrochemical performance
by: Cai, R., et al.
Published: (2010)
by: Cai, R., et al.
Published: (2010)
Solid lithium electrolyte-Li4Ti5O12 composites as anodes of lithium-ion batteries showing high-rate performance
by: Sha, Y., et al.
Published: (2013)
by: Sha, Y., et al.
Published: (2013)
Anisotropic mechanical properties of Si anodes in a lithiation process of lithium-ion batteries
by: Wang, D., et al.
Published: (2018)
by: Wang, D., et al.
Published: (2018)
Facile spray-drying/pyrolysis synthesis of intertwined SiO@CNFs&G composites as superior anode materials for Li-ion batteries
by: Hou, X., et al.
Published: (2014)
by: Hou, X., et al.
Published: (2014)
Ballmilling-assisted synthesis and electrochemical performance of LiFePO4/C for lithium-ion battery adopting citric acid as carbon precursor
by: Zhang, D., et al.
Published: (2009)
by: Zhang, D., et al.
Published: (2009)
Preparation and re-examination of Li4Ti4.85Al0.15O12 as anode material of lithium-ion battery
by: Cai, R., et al.
Published: (2011)
by: Cai, R., et al.
Published: (2011)
Facile spray-drying/pyrolysis synthesis of core-shell structure graphite/silicon-porous carbon composite as a superior anode for Li-ion batteries
by: Li, M., et al.
Published: (2014)
by: Li, M., et al.
Published: (2014)
High yield and low-cost ball milling synthesis of nano-flake Si@SiO2 with small crystalline grains and abundant grain boundaries as a superior anode for Li-ion batteries
by: Hou, X., et al.
Published: (2015)
by: Hou, X., et al.
Published: (2015)
Interweaved Si@C/CNTs&CNFs composites as anode materials for Li-ion batteries
by: Zhang, M., et al.
Published: (2014)
by: Zhang, M., et al.
Published: (2014)
Facile synthesis of a MoO2-Mo2C-C composite and its application as favorable anode material for lithium-ion batteries
by: Zhu, Y., et al.
Published: (2016)
by: Zhu, Y., et al.
Published: (2016)
High performance porous iron oxide-carbon nanotube nanocomposite as an anode material for lithium-ion batteries
by: Lin, Q., et al.
Published: (2016)
by: Lin, Q., et al.
Published: (2016)
Adsorption-based synthesis of Co3O4/C composite anode for high performance lithium-ion batteries
by: Wang, S., et al.
Published: (2017)
by: Wang, S., et al.
Published: (2017)
A hierarchical Zn2Mo3O8 nanodots–porous carbon composite as a superior anode for lithium-ion batteries
by: Zhu, Y., et al.
Published: (2016)
by: Zhu, Y., et al.
Published: (2016)
A low resistance and stable lithium-garnet electrolyte interface enabled by a multifunctional anode additive for solid-state lithium batteries
by: Cao, Chencheng, et al.
Published: (2022)
by: Cao, Chencheng, et al.
Published: (2022)
Characterization Of Lithium Vanadium Oxide Anode With Agar Binder In Aqueous Rechargeable Lithium Ion Batteries
by: Soo, Kuan Lim
Published: (2017)
by: Soo, Kuan Lim
Published: (2017)
Morphology-dependent performance of Zn2GeO4 as a high-performance anode material for rechargeable lithium ion batteries
by: Feng, Y., et al.
Published: (2015)
by: Feng, Y., et al.
Published: (2015)
A polyaniline-coated mechanochemically synthesized tin oxide/graphene nanocomposite for high-power and high-energy lithium-ion batteries
by: Ye, F., et al.
Published: (2015)
by: Ye, F., et al.
Published: (2015)
Electrochemical Characterization Of Lithium Vanadium Oxide Anode With Agar Binder In Aqueous Rechargeable Lithium Ion Batteries
by: Lease, Jacqueline
Published: (2018)
by: Lease, Jacqueline
Published: (2018)
Three Strongly Coupled Allotropes in a Functionalized Porous All-Carbon Nanocomposite as a Superior Anode for Lithium-Ion Batteries
by: Deng, X., et al.
Published: (2016)
by: Deng, X., et al.
Published: (2016)
Electrospinning based fabrication and performance improvement of film electrodes for lithium-ion batteries composed of TiO2 hollow fibers
by: Yuan, T., et al.
Published: (2011)
by: Yuan, T., et al.
Published: (2011)
Corncob-shaped ZnFe2O4/C nanostructures for improved anode rate and cycle performance in lithium-ion batteries
by: Mao, J., et al.
Published: (2015)
by: Mao, J., et al.
Published: (2015)
Design of Anode-Electrolyte Interface Towards Better Solid-State Lithium Batteries
by: Cao, Chencheng
Published: (2024)
by: Cao, Chencheng
Published: (2024)
Electrospun ternary composite metal oxide fibers as an anode for lithium-ion batteries
by: Ling, Jin Kiong, et al.
Published: (2022)
by: Ling, Jin Kiong, et al.
Published: (2022)
In situ electrochemical creation of cobalt oxide nanosheets with favorable performance as a high tap density anode material for lithium-ion batteries
by: Lin, Q., et al.
Published: (2015)
by: Lin, Q., et al.
Published: (2015)
Optimization of SnO2 Nanoparticles Confined in a Carbon Matrix towards Applications as High‐Capacity Anodes in Sodium‐Ion Batteries
by: Wei, S., et al.
Published: (2018)
by: Wei, S., et al.
Published: (2018)
Electrolyte Engineering for Safer Lithium-Ion Batteries: A Review
by: Cao, Chencheng, et al.
Published: (2023)
by: Cao, Chencheng, et al.
Published: (2023)
Enhancing Fast-Charge Capabilities in Solid-State Lithium Batteries through the Integration of High Li0.5La0.5TiO3 (LLTO) Content in the Lithium-Metal Anode
by: Cao, Chencheng, et al.
Published: (2023)
by: Cao, Chencheng, et al.
Published: (2023)
Integration of carbon-doped ZnO/S cathode and silicon/graphene nanoplate anode for silicon-sulfur batteries
by: Aslfattahi, Navid, et al.
by: Aslfattahi, Navid, et al.
Green synthesis of mesoporous ZnFe2O4/C composite microspheres as superior anode materials for lithium-ion batteries
by: Yao, L., et al.
Published: (2014)
by: Yao, L., et al.
Published: (2014)
Porous TiO2(B)/anatase microspheres with hierarchical nano and microstructures for high-performance lithium-ion batteries
by: Wang, J., et al.
Published: (2013)
by: Wang, J., et al.
Published: (2013)
Self-assembled mesoporous TiO2/carbon nanotube composite with a three-dimensional conducting nanonetwork as a high-rate anode material for lithium-ion battery
by: Wang, J., et al.
Published: (2014)
by: Wang, J., et al.
Published: (2014)
Optimizing graphene anode performance in lithium-ion batteries: investigating the effects of diverse thermal conditions
by: Ng, Zen Ian, et al.
Published: (2024)
by: Ng, Zen Ian, et al.
Published: (2024)
Facile synthesis of nanocrystalline TiO2 mesoporous microspheres for lithium-ion batteries
by: Wang, J., et al.
Published: (2011)
by: Wang, J., et al.
Published: (2011)
Recent progress in metal–organic frameworks for lithium–sulfur batteries
by: Zhong, Y., et al.
Published: (2018)
by: Zhong, Y., et al.
Published: (2018)
Recent progress on sodium ion batteries: Potential high-performance anodes
by: Li, L., et al.
Published: (2018)
by: Li, L., et al.
Published: (2018)
Numerical investigation of a non-aqueous lithium-oxygen battery based on lithium superoxide as the discharge product
by: Tan, P., et al.
Published: (2017)
by: Tan, P., et al.
Published: (2017)
Electrochemical performance of a Ni and YSZ composite synthesised by ultrasonic spray pyrolysis as an anode for SOFCs
by: Park, H., et al.
Published: (2011)
by: Park, H., et al.
Published: (2011)
Dodecylamine-Induced Synthesis of a Nitrogen-Doped Carbon Comb for Advanced Lithium-Sulfur Battery Cathodes
by: Lu, Q., et al.
Published: (2018)
by: Lu, Q., et al.
Published: (2018)
Similar Items
-
A kinetic model for diffusion and chemical reaction of silicon anode lithiation in lithium ion batteries
by: Xie, Z., et al.
Published: (2016) -
Facile mechanochemical synthesis of nano SnO2/graphene composite from coarse metallic sn and graphite oxide: An outstanding anode material for lithium-ion batteries
by: Ye, F., et al.
Published: (2014) -
Li4Ti5O12/Sn composite anodes for lithium-ion batteries: Synthesis and electrochemical performance
by: Cai, R., et al.
Published: (2010) -
Solid lithium electrolyte-Li4Ti5O12 composites as anodes of lithium-ion batteries showing high-rate performance
by: Sha, Y., et al.
Published: (2013) -
Anisotropic mechanical properties of Si anodes in a lithiation process of lithium-ion batteries
by: Wang, D., et al.
Published: (2018)