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TiO2/carbon hollow spheres (TiO2/C-HSs) have been successfully prepared using a template method.
A template method for the synthesis of multi-wall carbon nanotubes from dichloromethane was investigated.
To approximate interface curvature, a template method is employed which incorporates crystalline anisotropy.
Hydroxyapatite (HA) porous scaffolds were prepared by a template method and fabricated using either collagen (COL) or COL/HA particles.
They were prepared in hydrothermal conditions by a template method based on polymer periodic structures of the same geometry, and fabricated by a 3D printer using photocurable resin.
Mesoporous silica with tunable morphology, pore architecture and crystallinity was successfully coated on gold nanorods by a template method based on the self-assembly of anionic surfactants with inorganic precursors.
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Hollow Si nanospheres are formed using a templating method which is followed by carbon coating via carbonization of a pyrrole precursor to form HSi@C.
A series of ordered macroporous Li3V2(PO4)3 (LVP) cathode materials with three different pore sizes (65 nm, 120 nm and 210 nm) are prepared via a templating method using poly methyl methacrylate) (PMMA) colloidal crystals as templates.
A templating method could provide a facile fabrication without the existence of intricate or affluent system.
Liu et al. synthesized α-Fe2O3 nanotubes by a templating method [10].
A templating method has a great potential to produce various one-dimensional nanostructures with different favorable properties.
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