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The first part of the presentation deals with the preparation of the composite powders, which was achieved using an electroless process.
The copper hexacyanoferrate (II) was formed in the following stages: (i) deposition of metallic copper on an n-Si(1 0 0) electrode using an electroless process and (ii) electrooxidation of the copper film in a solution containing Fe CN 64− ions.
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As a summary, MWCNTs coated with about 40 to 60 nm of relatively uniform and continuous nano-crystalline silver layer were fabricated using an electroless silver plating process.
The one-dimensional Ag/MWCNT nano-composites were fabricated using an electroless silver plating process [10 13] (see Additional file 1). Figure 1a shows that the relatively uniform and continuous silver layer was coated on MWCNT.
In this investigation, nickel (Ni -coated WC-12Co powder was produced usiNi -coatedtroless nickel‑phosphorus (Ni-P) plating process and then used as a feedstock material for laser cladding of AISI 321 stainless steel substrate.
The Co-coated carbonyl iron particles were successfully prepared using an electroless plating method.
In the present investigation electroless ternary NiWP Al2O3 composite coatings were prepared using an electroless nickel bath.
Such coatings were produced using an electroless like co-deposition route.
Multi-walled carbon nanotubes were used to make the nanotube paper, and were subsequently modified with platinum using an electroless deposition method based on substrate enhanced electroless deposition.
For example, Fruza et al. reported that polyester fabrics were successfully coated with crystalline particles of ZnO using an electroless deposition [81].
The ternary Ni P Fe alloy coating was developed by an electroless process using a citrate bath.
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