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Discovered in 1944 by A. Brenner and G.E. Riddell, electroless plating involves the deposition of such metals as copper, nickel, silver, gold, or palladium on the surface of a variety of materials by means of a reducing chemical bath.
This high-temperature treatment limits the deposition of such materials on plastic substrates.
For deposition of such small-area thin films by spray coating, masks need to be employed.
Deposition of such compounds leads to the formation of the phase metalorganic layers on the metal surface and subsequent decrease in corrosion rate.
It was discovered that the deposition of such material occurred particularly along the edge of the chloroplasts as well inside them and in the starch granules.
Deposition of such compounds on the metal surface in form of the phase layers leads to the gradual decrease in corrosion rate thus providing the efficient anticorrosive protection.
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Deposition procedures of such diamond films are described in detail in Ref. [27].
The optimal deposition processes of such a film are also determined.
The deposition efficiency of such particles is smaller than that of rigid fibrous or spherical ones with the same mass.
When dealing with particulate matter especially, questions arise concerning the deposition efficiency of such an exposure device.
1 "Given the very large surface area and the very high alveolar deposition fraction of such particles, their potential to cause health problems cannot be ignored," says first author Mohamad Sleiman, a chemist with the Environmental Energy Technologies Division of Lawrence Berkeley National Laboratory LBNLL).
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