Facile fabrication of Au/SiO2 nanostructures from 1D to 3D nanotubes networks using templating methods

We report a facile fabrication method for free-standing gold (Au) or silica (SiO2) nanotubes with highly controlled geometry and ordered porosity (pNTs) and their nanostructuration from 1D to 3D interconnected networks. A dual nano-templating method was employed using polycarbonate membranes as firs...

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Vydané v:Catalysis today Ročník 429; s. 114472
Hlavní autori: Drault, Fabien, Eloy, Pierre, Demoustier-Champagne, Sophie, Hermans, Sophie
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: Elsevier B.V 01.03.2024
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ISSN:0920-5861, 1873-4308
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Abstract We report a facile fabrication method for free-standing gold (Au) or silica (SiO2) nanotubes with highly controlled geometry and ordered porosity (pNTs) and their nanostructuration from 1D to 3D interconnected networks. A dual nano-templating method was employed using polycarbonate membranes as first mold for the nanotubes, together with stacked polystyrene (PS) nanospheres to induce porosity. The pore size in the final nanotube walls can be controlled by adjusting the ratio x (where x = internal diameter of the nanotube divided by the diameter of the nanospheres), which determines the packing order of the spheres in the tubes. Then, gold electroless or silica sol-gel deposition were performed in the dual-templated structure to obtain Au or SiO2 pNTs, respectively. The templates removal was performed in one step using dichloromethane. A further functionalization of the silica pNTs with Au NPs using the electroless deposition method was successfully implemented as well, leading to a homogeneous dispersion of Au NPs with a size of 11 ± 2.8 nm. Chemical compositions and optical properties of the so-obtained materials were determined by XPS and UV–visible analyses, respectively. [Display omitted]
AbstractList We report a facile fabrication method for free-standing gold (Au) or silica (SiO2) nanotubes with highly controlled geometry and ordered porosity (pNTs) and their nanostructuration from 1D to 3D interconnected networks. A dual nano-templating method was employed using polycarbonate membranes as first mold for the nanotubes, together with stacked polystyrene (PS) nanospheres to induce porosity. The pore size in the final nanotube walls can be controlled by adjusting the ratio x (where x = internal diameter of the nanotube divided by the diameter of the nanospheres), which determines the packing order of the spheres in the tubes. Then, gold electroless or silica sol-gel deposition were performed in the dual-templated structure to obtain Au or SiO2 pNTs, respectively. The templates removal was performed in one step using dichloromethane. A further functionalization of the silica pNTs with Au NPs using the electroless deposition method was successfully implemented as well, leading to a homogeneous dispersion of Au NPs with a size of 11 ± 2.8 nm. Chemical compositions and optical properties of the so-obtained materials were determined by XPS and UV–visible analyses, respectively. [Display omitted]
ArticleNumber 114472
Author Drault, Fabien
Eloy, Pierre
Hermans, Sophie
Demoustier-Champagne, Sophie
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  organization: Institute of Condensed Matter and Nanosciences (MOST division), UCLouvain, 1 Place Louis Pasteur, B-1348 Louvain-la, Neuve, Belgium
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Keywords Interconnected porous nanotube networks
Electroless plating
Gold nanoparticles
Sol-gel deposition
Dual-templates method
Silica nanotubes
Language English
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Snippet We report a facile fabrication method for free-standing gold (Au) or silica (SiO2) nanotubes with highly controlled geometry and ordered porosity (pNTs) and...
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StartPage 114472
SubjectTerms Dual-templates method
Electroless plating
Gold nanoparticles
Interconnected porous nanotube networks
Silica nanotubes
Sol-gel deposition
Title Facile fabrication of Au/SiO2 nanostructures from 1D to 3D nanotubes networks using templating methods
URI https://dx.doi.org/10.1016/j.cattod.2023.114472
Volume 429
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