Abstract:
A method for protecting an item from weight gain due to uptake of liquid comprising the step of exposing the item to plasma in a gaseous state for a sufficient period of time to allow a protective layer, particularly a polymeric layer, to be created on the surface of the item. Also encompassed is an item of footwear treated by the method.
Abstract:
A microfabricated device or component thereof, such as microfluidics or nanofluidics device having a uniform non-wetting or non-absorbing polymeric coating or surface modification formed on a surface thereof by ionisation or activation technology such as plasma processing, to produce a surface energy of less than 15 mNm−1. The treatment enhances the free-flowing properties of a liquid through the device during use.
Abstract:
A method for maintaining pore size of a reusable filtration membrane, said method comprising exposing said filtration membrane to a plasma comprising a hydrocarbon or fluorocarbon monomer so as to form a polymeric layer on the surface thereof. The treatment allows the filtration membrane to withstand washing procedures, in particular caustic washing. Thus reusable filtration membranes treated in this way and their use, form a further aspect of the invention.
Abstract:
An item of footwear having a liquid-repelling polymeric coating, obtained by a plasma treatment process, provided over at least part of a surface thereof, said item also being provided at the region on the inside upon which the wearer's foot rests with a liquid-absorbing foot supporting footbed. Items of this type provide improved comfort for the wearer.
Abstract:
An electrical or electronic device comprising a polymeric coating, formed by exposing said device to pulsed plasma comprising a compound of formula (I) where R1, R2, R3 and R4 are as defined in the specification, for a sufficient period of time to allow a polymeric layer to form on the surface of the electrical or electronic device. Devices of this type are protected from contamination by liquids, in particular environmental liquids.
Abstract:
A microfabricated device or component thereof, such as microfluidics or nanofluidics device having a uniform non-wetting or non-absorbing polymeric coating or surface modification formed on a surface thereof by ionization or activation technology such as plasma processing, to produce a surface energy of less than 15 mNm−1. The treatment enhances the free-flowing properties of a liquid through the device during use.
Abstract:
A microfabricated device or component thereof, such as microfluidics or nanofluidics device having a uniform non-wetting or non-absorbing polymeric coating or surface modification formed on a surface thereof by ionisation or activation technology such as plasma processing, to produce a surface energy of less than 15 mNm−l. The treatment enhances the free-flowing properties of a liquid through the device during use.
Abstract:
A fibrous filtration media such as an electrostatic filtration media, whose fibre surfaces have been modified by exposure to a plasma deposition process so as to deposit a polymeric coating thereon.
Abstract:
A method for forming a liquid repellent surface on a substrate, said method comprising applying a combination of nanoparticles and a polymeric material to the surface in a chamber using ionisation or activation technology, in particular plasma processing.
Abstract:
A method of treating wool in the form of a fibre, yarn, sliver, fabric or garment. A polymer coating is applied by plasma polymerisation to prevent shrinkage due to felting due to laundering. The method may include a pre-treatment step, for example application of a continuous plasma of inert gas, application of nano particles to the fibre surface or coating the fibre surface with a polymer.