In this work, multiwalled carbon nanotube-silicon/germanium (MWCNT-Si/Ge) electrodes were prepared by layer-by-layer deposition of Si and Ge films onto an MWCNT sheet using RF magnetron sputtering. The MWCNT-Si/Ge composites were characterized by spectroscopy and microscopy techniques, which confirmed the deposition of amorphous Si and Ge films. The as-prepared Si/Ge@MWCNT composites were tested as an anode material in a half cell using Li metal as counter and reference electrodes, and in a full cell using LiFePO4 as a cathode. MWCNT-Si/Ge showed a greater charge capacity retention (88% capacity retention) than MWCNT-Si (72% capacity retention) and Cu–Si/Ge (12% capacity retention) after 50 GCD cycles, confirming the important roles of the ...
Problems related to tremendous volume changes associated with cycling and the low electron conductiv...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Amorphous germanium and germanium-based films are sputter-deposited as anodes for lithium ion batter...
Herein, Si–Ge binary alloy films are prepared by deposition on rough copper (Cu) foil and multiwalle...
Silicon (Si)-based anodes demonstrate great potential for the revolutionary enhancement in the energ...
The performance of polycrystalline and amorphous germanium (Ge) as anode active materials for lithiu...
Many industries spanning macro to micro applications need advanced energy storage capabilities and L...
To improve the electrochemical performance of Si film, we investigate the addition of two film forms...
Si nanotubes for reversible alloying reaction with lithium are able to accommodate large volume cha...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...
Germanium (Ge) nanocrystals combined with multiwalled carbon nanotube (Ge-MWCNT) composites were syn...
In the context of high demand for energy in mobile devices, many studies deal with the lithium-ion c...
A core/shell type silicon/carbon nanotubes (Si/CNTs) composite is prepared and its anodic performanc...
Problems related to tremendous volume changes associated with cycling and the low electron conductiv...
In this study, we comparatively study the electrochemical characteristics of Si, Si-C and vacuum-ass...
Problems related to tremendous volume changes associated with cycling and the low electron conductiv...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Amorphous germanium and germanium-based films are sputter-deposited as anodes for lithium ion batter...
Herein, Si–Ge binary alloy films are prepared by deposition on rough copper (Cu) foil and multiwalle...
Silicon (Si)-based anodes demonstrate great potential for the revolutionary enhancement in the energ...
The performance of polycrystalline and amorphous germanium (Ge) as anode active materials for lithiu...
Many industries spanning macro to micro applications need advanced energy storage capabilities and L...
To improve the electrochemical performance of Si film, we investigate the addition of two film forms...
Si nanotubes for reversible alloying reaction with lithium are able to accommodate large volume cha...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...
Germanium (Ge) nanocrystals combined with multiwalled carbon nanotube (Ge-MWCNT) composites were syn...
In the context of high demand for energy in mobile devices, many studies deal with the lithium-ion c...
A core/shell type silicon/carbon nanotubes (Si/CNTs) composite is prepared and its anodic performanc...
Problems related to tremendous volume changes associated with cycling and the low electron conductiv...
In this study, we comparatively study the electrochemical characteristics of Si, Si-C and vacuum-ass...
Problems related to tremendous volume changes associated with cycling and the low electron conductiv...
The application of lithium-ion (Li-ion) secondary batteries in electrical and hybrid electrical cars...
Amorphous germanium and germanium-based films are sputter-deposited as anodes for lithium ion batter...