Engineering Co3O4 nanoparticles into highly ordered, 3D inverse opal (IO) structures is shown to significantly improve their performance as more efficient conversion mode Li-ion anode materials. By comparison with Co3O4 microparticles, the advantages of the porous anode architecture are clearly shown. The inverse opal material markedly enhances specific capacity and capacity retention. The impact of various C rates on the rate of the initial charge demonstrates that higher rate charging (10 C) was much less destructive to the inverse opal structure than charging at a slow rate (0.1 C). Slower C rates that affect the IO structure resulted in higher specific capacities (more Li2O) as well as improved capacity retention. The IO structures cycl...
Technology in energy storage is constantly improving and evolving to satisfy the demand for storage ...
Hierarchically organized porous carbonized-Co3O4 inverse opal nanostructures (C-Co3O4 IO) are synthe...
We propose an effective strategy to engineer a unique kind of porous carbon cuboid with tightly anch...
Engineering Co3O4 nanoparticles into highly ordered, 3D inverse opal (IO) structures is shown to sig...
In this short review, we overview some advancements made in Li-ion battery anode development, where ...
Structured porous materials have provided several breakthroughs that have facilitated high rate capa...
Co3O4 has shown acceptable electrochemical properties as the anode material of Li secondary batterie...
Abstract(#br)Transition metal oxide is widely studied type of high-capacity anode material for lithi...
New routes to formation of tin oxide inverted opals with unique morphologies are presented. Inverted...
We present the formation of a carbon-coated honeycomb ternary Ni-Mn-Co-O inverse opal as a conversio...
A novel solution combustion synthesis of nanoscale spinel-structured Co3O4 powder was proposed in th...
Urea as a cheap reagent is very useful in preparation two-dimensional metal oxides with tunable crys...
A range of high-capacity Li-ion anode materials (conversion reactions with lithium) suffer from poor...
Lithium ion batteries (LIBs) play an essential role in modern life. Although relatively unknown thro...
Three-dimensional macroporous structures (‘opals’ and ‘inverse opals’) can be produced by colloidal ...
Technology in energy storage is constantly improving and evolving to satisfy the demand for storage ...
Hierarchically organized porous carbonized-Co3O4 inverse opal nanostructures (C-Co3O4 IO) are synthe...
We propose an effective strategy to engineer a unique kind of porous carbon cuboid with tightly anch...
Engineering Co3O4 nanoparticles into highly ordered, 3D inverse opal (IO) structures is shown to sig...
In this short review, we overview some advancements made in Li-ion battery anode development, where ...
Structured porous materials have provided several breakthroughs that have facilitated high rate capa...
Co3O4 has shown acceptable electrochemical properties as the anode material of Li secondary batterie...
Abstract(#br)Transition metal oxide is widely studied type of high-capacity anode material for lithi...
New routes to formation of tin oxide inverted opals with unique morphologies are presented. Inverted...
We present the formation of a carbon-coated honeycomb ternary Ni-Mn-Co-O inverse opal as a conversio...
A novel solution combustion synthesis of nanoscale spinel-structured Co3O4 powder was proposed in th...
Urea as a cheap reagent is very useful in preparation two-dimensional metal oxides with tunable crys...
A range of high-capacity Li-ion anode materials (conversion reactions with lithium) suffer from poor...
Lithium ion batteries (LIBs) play an essential role in modern life. Although relatively unknown thro...
Three-dimensional macroporous structures (‘opals’ and ‘inverse opals’) can be produced by colloidal ...
Technology in energy storage is constantly improving and evolving to satisfy the demand for storage ...
Hierarchically organized porous carbonized-Co3O4 inverse opal nanostructures (C-Co3O4 IO) are synthe...
We propose an effective strategy to engineer a unique kind of porous carbon cuboid with tightly anch...