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Overall, the increase of the interlayer spacing between the graphene layers and the presence of boron promote the pseudocapacitive intercalation which is responsible for the remarkable rate performance of these materials, whereas the improvement of diffusion-controlled intercalation capacity is mainly related to larger boron content.
This improvement of the diffusion length is very important for application to solar cells.
Additionally, cyclic voltammetry experiments indicate an improvement of lithium diffusion coefficient in LiFe0.333Mn0.667PO4 for both iron and manganese redox couples by addition of boron.
The increase in the current density results from the temperature of the electrolyte due to the improvement of the diffusion coefficients, mass transfer of the reactants and reaction kinetics.
This improvement of the diffusion length is very important for application to solar cells, and Al2O3 deposited by ALD is a promising passivation material for a structure with high aspect ratio such as SiNW arrays.
Compared to conventional nitriding techniques, no improvement of the diffusion process is then induced by the PBII treatment as the nitridation is mainly governed by thermal activated long range diffusion.
This work also demonstrates a new system takes place from the second cycle, characterized by a significant improvement of Li diffusion by a factor five and allowing high rates to be used.
Impedance behaviour of the ball-milled rutile β-MnO2vs cycles demonstrates a new system takes place from the second cycle, characterized by a significant improvement of Li diffusion by a factor 5 and a cathode impedance which decreases by a factor 2, remaining thereafter unchanged during cycling.
They are a significant improvement of the classical diffusion models.
This effect can be explained by slow swelling of the PPD membrane that led to an improvement of hydrogen peroxide diffusion through the PPD layer.
As a by-product, we illustrate the accuracy and possible improvement of our previous "diffusion model" for tightly coupled dusty-gas systems.
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