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Low-cost open-space scaffold structure for high-capacity silicon anode
N. Aloni,
D. Golodnitsky
*
,
E. Peled
*
Corresponding author for this work
School of Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
3
Scopus citations
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Keyphrases
Open Space
100%
Carbon Fiber
100%
High Capacity
100%
Silicon Anode
100%
Scaffold Structure
100%
Fibrous Scaffold
66%
Capacity Fade
66%
Negative Effects
33%
3D Structure
33%
Silica Nanoparticles (SiNPs)
33%
Phase Transformation
33%
Si Cell
33%
Degradation Mechanism
33%
Pyrolysis
33%
Stable Cycle Life
33%
Lithium-ion Battery
33%
Highly Porous
33%
Fiber Matrix
33%
Prolonged Cycling
33%
Cotton Carbon Fiber
33%
Industrial Production
33%
3D Carbon
33%
Carbon Coating
33%
Cotton Wool
33%
Conduction Pathway
33%
Anode Structure
33%
Engineering
Silicon Anode
100%
Open Space
100%
Fiber Scaffold
66%
Dimensional Structure
33%
Negative Effect
33%
Lithium-Ion Batteries
33%
Cycle Life
33%
Silicon Nanoparticle
33%
Pyrolysis
33%
Industrial Production
33%
Porosity
33%
Material Science
Silicon
100%
Anode
100%
Carbon Fiber
44%
Nanoparticle
11%
Lithium Ion Battery
11%
Chemical Engineering
Carbon Fiber
100%
Nanoparticle
25%
Pyrolysis
25%