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SiO2 conformally coats all exposed surfaces of the AAO including the top and bottom of the template, creating a connected tubular network of SiO2.
Next, vacuum degassing was carried out to assist the penetration into the bottom of the template, as used commonly in the fabrication of dye-sensitized solar cells (DSSC) [38, 39].
As seen, the employed barrier layer thinning procedure leads to ~300 nm long non-uniform branched pores at the bottom of the template, which is subsequently replicated by the Ni nanowires.
The PCDTBT solution infiltrates into the template by two wetting phenomena namely (i) capillary force (repulsion) which cause the solution to rise from the bottom of the template and (ii) with the assistance of gravity that contributes to the flow of solution from the top of the template into the nanopore (Figure 2a).
A second potential improvement to the Figure Facts template would be to move the "experimental question" prompt to the bottom of the template.
Position the bottom of the template on the pencil that you drew earlier.
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The employed techniques give rise to branched pores at the bottom of the templates and consequently dendrites at the end of the nanowires.
Remember to make sure that the bottom portion of the template (where the template reaches your wrist) lines up with the bottom edge of the felt.
The junction between the electrode surface and the bottom edge of the template pore serves as a preferential site for the deposition of metal ions, because the inner walls of the nanochannels have surface absorption energy [25, 26].
Based on our experimental results, we can claim that the junction between the electrode surface and the bottom edge of the template pore serves as a preferential site for the deposition of metal ions, because the inner walls of the nanochannels have surface adsorption energy [11].
The analyses confirmed the excellent conformality of the deposition, thanks to the good diffusion of the precursors inside the nanostructured template, so the TiO2 coverage came up to the bottom of the Si template, despite the high aspect ratio of the nanostructures (approximately 100).
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com