Nova Patents
EP1501959A1

Plasma-assisted enhanced coating

Abstract

Methods and apparatus are provided for igniting, modulating, and sustaining a plasma for various plasma processes and treatments. In one embodiment, a plasma is ignited by subjecting a gas in a multi-mode processing cavity to electromagnetic radiation having a frequency between about 1 MHz and about 333 GHz in the presence of a plasma catalyst, which may be passive or active. A passive plasma catalyst may include, for example, any object capable of inducing a plasma by deforming a local electric field. An active plasma catalyst can include any particle or high energy wave packet capable of transferring a sufficient amount of energy to a gaseous atom or molecule to remove at least one electron from the gaseous atom or molecule, in the presence of electromagnetic radiation.

Term

Term ended

Projected expiry passed 7 May 2023, 3.4 years ago.

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46 claims: 2 independent, 44 dependent

  1. 1
    Claims of equivalent WO 03095699 A1 WE CLAIM:1. A method of coating a first surface area of an object, comprising: forming a plasma in a first cavity by subjecting a gas to an amount of electromagnetic radiation in the presence of a plasma catalyst, wherein the cavity is formed in a vessel;placing at least one coating material in a position that is separate from the plasma and in fluid communication therewith;energizing a portion of the at least one coating material so that the energized portion can be added to the plasma;and allowing the at least one material to deposit on the surface area of the object to form a coating.
  2. 29
    A material deposition system, comprising:a vessel in which a first cavity is formed, and configured such that a plasma can be ignited in the cavity by subjecting a gas to an amount of electromagnetic radiation power in the presence of a plasma catalyst;an electromagnetic radiation source configured to direct the electromagnetic radiation into the first cavity during deposition;a gas source coupled to the first cavity such that a gas can flow into the cavity during deposition;and an energy source for energizing a portion of at least one coating material so that the energized portion can be added to the plasma, wherein prior to being energized, the at least one coating material is in fluid communication, but not in contact, with the plasma.