In this short review, we overview some advancements made in Li-ion battery anode development, where the structural arrangement of the material plays an important role. Specifically, we summarise the benefits of 3D macroporous structure imposed the anode material, in order to improve ionic and electronic conductivity in the absence of conductive additives and binders. Two anode materials are overviewed: TiO2 and GeO2. These are either high capacity anode materials or accessible, abundant materials that are capable of very stable and long-term cycling. We have focused this review on 3D inverse opal structures of these anodes and summarise their enhanced behaviour by comparing their performance metrics to a range of nanoscale and porous analog...
Adding porosity to battery electrodes is sometimes useful for accommodating volumetric expansion, el...
Potential applications of sodium-ion batteries (SIBs) have motivated significant research interest i...
Three-dimensional macroporous structures (‘opals’ and ‘inverse opals’) can be produced by colloidal ...
In this short review, we overview some advancements made in Li-ion battery anode development, where ...
Rutile TiO2 inverse opals provide long cycle life and impressive structural stability when tested as...
We demonstrate that crystalline macroporous GeO2 inverse opals exhibit state-of-the-art capacity ret...
Engineering Co3O4 nanoparticles into highly ordered, 3D inverse opal (IO) structures is shown to sig...
Nanocomposite SnO2/GeO2 inverse opals (IOs) provide long cycle life with excellent capacity retentio...
Structured porous materials have provided several breakthroughs that have facilitated high rate capa...
Electrode materials with battery-like high capacity and capacitorlike rate performance are highly de...
The lithium ion battery (LIB) has proven to be a very reliably used system to store electrical energ...
Here we summarize some results on the use of TiO nanostructures as anode materials for more efficien...
New routes to formation of tin oxide inverted opals with unique morphologies are presented. Inverted...
Rechargeable lithium batteries have already revolutionized the market of portable electronic devices...
With the increased attention on sustainable energy, a novel interest has been generated towards cons...
Adding porosity to battery electrodes is sometimes useful for accommodating volumetric expansion, el...
Potential applications of sodium-ion batteries (SIBs) have motivated significant research interest i...
Three-dimensional macroporous structures (‘opals’ and ‘inverse opals’) can be produced by colloidal ...
In this short review, we overview some advancements made in Li-ion battery anode development, where ...
Rutile TiO2 inverse opals provide long cycle life and impressive structural stability when tested as...
We demonstrate that crystalline macroporous GeO2 inverse opals exhibit state-of-the-art capacity ret...
Engineering Co3O4 nanoparticles into highly ordered, 3D inverse opal (IO) structures is shown to sig...
Nanocomposite SnO2/GeO2 inverse opals (IOs) provide long cycle life with excellent capacity retentio...
Structured porous materials have provided several breakthroughs that have facilitated high rate capa...
Electrode materials with battery-like high capacity and capacitorlike rate performance are highly de...
The lithium ion battery (LIB) has proven to be a very reliably used system to store electrical energ...
Here we summarize some results on the use of TiO nanostructures as anode materials for more efficien...
New routes to formation of tin oxide inverted opals with unique morphologies are presented. Inverted...
Rechargeable lithium batteries have already revolutionized the market of portable electronic devices...
With the increased attention on sustainable energy, a novel interest has been generated towards cons...
Adding porosity to battery electrodes is sometimes useful for accommodating volumetric expansion, el...
Potential applications of sodium-ion batteries (SIBs) have motivated significant research interest i...
Three-dimensional macroporous structures (‘opals’ and ‘inverse opals’) can be produced by colloidal ...