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In this work, coatings of 10 μm and 25 μm nominal thicknesses were prepared by Plasma Electrolytic Oxidation on AM50B and AM60B alloys.
In the present work, coatings up to 110 μm thick were produced on an AJ62 Mg-alloy substrate using the PEO process.
In the present work, coatings in the material systems B-C-W and B-C-Ti have been synthesized by pulse magnetron sputtering, to exploit their potential as coatings for hard, wear resistant applications.
In this work coatings were developed on the surface of AM50 magnesium alloy using four different electrolytes containing 10 wt.% each of K3PO4 and Na3PO4 in combination with either potassium or sodium hydroxides.
We note, however, that this may represent an upper limit of ALD effective lifetimes in our earlier work coatings were applied to flat, clean, 2-dimensional ideal silver substrates [16 18].
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Finally, well working coatings with smooth morphology and good adhesions were produced in a controlled process and then field-tested.
SnO2-Sb x O y coatings are used as a working coatings for sensors [1], supercapacitors [4], electrodes in accumulators [2], fuel cells [3], MEMS microheater devices [5], electrochromatic displays, solar cells, and other optoelectronic devices [6].
In this work such coatings were produced using both pure and surface alloyed Ti precursors.
In this work, biomimetic coatings are designed for quartz crystal microbalance (QCM) based mass-sensitive devices to detect trace amounts of organic vapors.
The present work characterises coatings of a cobalt-based alloy, deposited by PTA welding on an AISI 304 stainless steel substrate.
In this work, MoS2 Nb coatings deposited by closed-field unbalanced magnetron sputtering (CFUBMS) have been scratch tested in two modes.
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