An increasing demand for lithium-ion batteries with high energy storage and a high-power rating, to enable applications such as electric vehicles, demands electrode materials with large charge storage capability and faster kinetics. We demonstrate the synthesis and utilization of the hierarchical porous carbon structures derived from bacterial cellulose-polyaniline nanocomposites as a promising anode material for high-rate lithium-ion batteries. Microstructural analysis of the derived carbon revealed the inheritance of fibrous backbone from bacterial cellulose along with the nanogranular structure of polyaniline. The structural characterization of as-derived porous carbon structures is performed by XRD, Raman spectroscopy, and XPS, and the ...
One of the major objective of this work is to identify the key parameters in hard carbon materials t...
Thanks to their fascinating physical properties such as high surface area, multidimensional electron...
Thanks to their fascinating physical properties such as high surface area, multidimensional electron...
In the natural habitat, bacteria have an ability to produce cellulose in the form of three-dimension...
Despite recent developments at lab-scale, Lithium ion is still fastest growing and most promising te...
Biomass-derived heteroatom-doped carbons have been considered to be excellent lithium ion battery (L...
A sandwich-like, graphene-based porous nitrogen-doped carbon (PNCs@Gr) has been prepared through fac...
Nitrogen-doped porous carbons are of special interest, because their unique physical properties such...
Tin oxide-carbon composite porous nanofibres exhibiting superior electrochemical performance as lith...
Silicon (Si)/carbon nanocomposites have attracted extensive interests as emerging electrode material...
The development of new carbon-based materials as electrode for lithium-ion batteries (LIBs) is a pro...
In this study, a simple and reproducible synthesis strategy was developed to fabricate mesoporous ca...
Lithium-ion batteries (LIBs) have already gained significant attention because they have satisfactor...
Lithium-ion batteries (LIBs) have already gained significant attention because they have satisfactor...
One of the major objective of this work is to identify the key parameters in hard carbon materials t...
One of the major objective of this work is to identify the key parameters in hard carbon materials t...
Thanks to their fascinating physical properties such as high surface area, multidimensional electron...
Thanks to their fascinating physical properties such as high surface area, multidimensional electron...
In the natural habitat, bacteria have an ability to produce cellulose in the form of three-dimension...
Despite recent developments at lab-scale, Lithium ion is still fastest growing and most promising te...
Biomass-derived heteroatom-doped carbons have been considered to be excellent lithium ion battery (L...
A sandwich-like, graphene-based porous nitrogen-doped carbon (PNCs@Gr) has been prepared through fac...
Nitrogen-doped porous carbons are of special interest, because their unique physical properties such...
Tin oxide-carbon composite porous nanofibres exhibiting superior electrochemical performance as lith...
Silicon (Si)/carbon nanocomposites have attracted extensive interests as emerging electrode material...
The development of new carbon-based materials as electrode for lithium-ion batteries (LIBs) is a pro...
In this study, a simple and reproducible synthesis strategy was developed to fabricate mesoporous ca...
Lithium-ion batteries (LIBs) have already gained significant attention because they have satisfactor...
Lithium-ion batteries (LIBs) have already gained significant attention because they have satisfactor...
One of the major objective of this work is to identify the key parameters in hard carbon materials t...
One of the major objective of this work is to identify the key parameters in hard carbon materials t...
Thanks to their fascinating physical properties such as high surface area, multidimensional electron...
Thanks to their fascinating physical properties such as high surface area, multidimensional electron...