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The well-crystallized LiFePO4 cathode material was synthesized by liquid deposition method using mesoporous Ketjen Black (KB) as template.
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A novel Ag3PO4-sepiolite composite photocatalyst was first synthesized using the liquid deposition method.
A low-temperature chemical-liquid deposition method has been employed to grow oriented ZnO nanorods by continuously supplying Zn ions from a Zn foil to form a ZnO thin film in aqueous formaldehyde solution [22].
The prepared material was characterized from the point of view of its structure and possible photocatalytic applications and was compared with titania films deposited on the Ti-mesh by liquid deposition (TiO2-LD) and sol-gel methods (TiO2-SG).
TiO2 supported metal nanocatalysts were prepared by liquid phase photo deposition method [32].
In this present study TiO2 supported metal catalysts (Pt/TiO2, Pt Fe/TiO2) were prepared by liquid phase photo deposition method.
Firstly, nickel hydroxide hydrate nanoflakes are deposited on Ni foam via a chemical liquid deposition (CLD) method.
It combined with electrospinning technique, liquid phase deposition method and photoreduction.
Some examples of these methods include chemical vapour deposition [22], the sol-gel method [23], etching technique [24], electrochemical deposition [25], the layer-by-layer deposition method [26], etc.
The heterojunction films of WO3/TiO2 were prepared by liquid phase deposition (LPD) method via two-step processes.
For example, Walsh et al. used dextran as a sacrificial template to fabricate silver sponges, Yamauchi and co-workers prepared mesoporous nickel by an electroless deposition method in the presence of lyotropic liquid crystals, and Kuroda et al. reported 2D hexagonally ordered mesoporous metals (Ru, Pt, or Pd) by dissolving silica replica [9-11].
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