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Nanoscale, ISSN 2040-3364, 02/2018, Volume 10, Issue 5, pp. 2473 - 2480
Porous carbon and nanocarbons have been extensively applied as anode materials for high-energy density lithium-ion batteries (LIBs). However, as another... 
Embedding | Lithium | Buckminsterfullerene | Nitrogen | Carbon | Rechargeable batteries | Lithium-ion batteries | Nonaqueous electrolytes | Carbonization | Electrode materials | Flux density | Fullerenes | Anodes | Metal-organic frameworks
Journal Article
Chemistry – An Asian Journal, ISSN 1861-4728, 05/2018, Volume 13, Issue 10, pp. 1248 - 1265
Sodium‐ion batteries (SIBs) have attracted much attention for application in large‐scale grid energy storage owing to the abundance and low cost of sodium... 
carbon hybrids | anodes | energy conversion | sodium-ion batteries | carbon | REDUCED GRAPHENE OXIDE | EXCELLENT ELECTROCHEMICAL PERFORMANCE | HIGH-PERFORMANCE SODIUM | HARD CARBON | CHEMISTRY, MULTIDISCIPLINARY | LONG-LIFE ANODE | LITHIUM-ION | HIGH-CAPACITY ANODE | CYCLING STABILITY | SUPERIOR-RATE PERFORMANCE | DOPED POROUS CARBON
Journal Article
Nanoscale, ISSN 2040-3364, 07/2014, Volume 6, Issue 14, pp. 7817 - 7822
Journal Article
ACS Applied Materials & Interfaces, ISSN 1944-8244, 11/2016, Volume 8, Issue 47, pp. 32360 - 32365
Na3V2(PO4)3 (NVP) has been considered as a most promising cathode material for sodium-ion batteries (SIBs), but NVP usually exhibits poor cycling stability and... 
Research | cathode | freestanding electrode | graphite foam | PO | sodium-ion battery
Journal Article
中国化学快报:英文版, ISSN 1001-8417, 2017, Volume 28, Issue 12, pp. 2231 - 2234
Reduced graphene oxide wrapped hollow molybdenum trioxide nanorods (MoO3@rGO) have been fabricated by a facile process. The MoO3@rCO shows improved lithium... 
Lithium-ion batteries | MoO3 | rGO | Anode | high performance | MoO | CARBON | ENHANCED ELECTROCHEMICAL PERFORMANCE | ANODE MATERIAL | METAL-ORGANIC FRAMEWORK | NANOWIRE ARRAYS | COMPOSITES | CHEMISTRY, MULTIDISCIPLINARY | CATHODE MATERIAL | RATE CAPABILITY | NANOCOMPOSITE | HIGH-CAPACITY | Lithium cells | Usage | Properties | Graphene | Nanorods | Innovations
Journal Article
ISSN 2050-7488, 12/2016, Volume 4, Issue 48, pp. 18711 - 18716
Germanium (Ge) has been considered as a promising anode material for Li-ion batteries because of its theoretical capacity (1600 mA h g −1 ). However, its poor... 
Journal Article
Nanoscale, ISSN 2040-3364, 08/2014, Volume 6, Issue 16, pp. 9579 - 9587
Flexible and free-standing sulphur/(PCNFs-CNT) composite (ScaPCNFs-CNT) electrode was successfully prepared by infiltrating sulfur into microporous carbon... 
PHYSICS, APPLIED | BINDER | CYCLE LIFE | MATERIALS SCIENCE, MULTIDISCIPLINARY | ELECTRICAL-CONDUCTIVITY | GRAPHENE | ELECTRODES | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | NANOTUBES | HIGH-RATE PERFORMANCE | HIGH-CAPACITY | LITHIUM | ELECTROCHEMICAL PERFORMANCE | Electrodes | Nanostructure | Sulfur | Sulphur | Carbon | Cathodes | Three dimensional | Lithium sulfur batteries
Journal Article
Nanoscale, ISSN 2040-3364, 08/2014, Volume 6, Issue 16, p. 9579
Flexible and free-standing sulphur/(PCNFs-CNT) composite (S@PCNFs-CNT) electrode was successfully prepared by infiltrating sulfur into microporous carbon... 
Journal Article
Nanoscale, ISSN 2040-3364, 04/2014, Volume 6, Issue 9, pp. 4532 - 4537
Germanium is a promising high-capacity anode material for lithium ion batteries, but still suffers from poor cyclability due to its huge volume variation... 
Electrodes | Lithium-ion batteries | Nanoparticles | Encapsulation | Carbon fibers | Germanium | Nanofibers | Anodes
Journal Article
Nanoscale, ISSN 2040-3364, 05/2014, Volume 6, Issue 9, pp. 4532 - 4537
Germaniumis a promising high-capacity anode material for lithium ion batteries, but still suffers from poor cyclability due to its huge volume variation during... 
STORAGE | PHYSICS, APPLIED | ELECTROCHEMICAL PROPERTIES | SINGLE | ANODE MATERIAL | GE NANOWIRES | MATERIALS SCIENCE, MULTIDISCIPLINARY | SILICON | GRAPHENE | NANOSCIENCE & NANOTECHNOLOGY | CHEMISTRY, MULTIDISCIPLINARY | GROWTH | RATE CAPABILITY | HIGH-CAPACITY
Journal Article