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    • 3. 发明专利
    • Electrostatic disinfectant gun
    • GB202015571D0
    • 2020-11-18
    • GB202015571
    • 2020-10-01
    • HANSON PAUL STEPHEN
    • An electrostatic disinfectant gun 200 comprising a spray arrangement 102 operable to disinfect a surface and a microbe detection module 104 operatively coupled to the spray arrangement. The spray arrangement 102 is configured to operate with different operating parameters each offering a distinct disinfection attribute. The microbe detection module 104 is operable to detect a microbe and provide information regarding the detected microbe to the spray arrangement 102, wherein the spray arrangement 102 is operable to select the operating parameters based on the information received regarding the detected microbe. Preferably the spray arrangement 102 comprises an electrostatic filter arrangement 116 comprising an electrostatic filter (116A, fig. 1), an ionisation chamber (116B, fig. 2) and an electro coil 116C which are configured to generate a high voltage charging field to positively charge the disinfecting fluid. The disinfectant gun 200 may further comprise a piezoelectric atomiser 118 and an ultraviolet (UV) radiation generator. The different operating parameters may relate to the operation of an air flow generator (i.e. fan) 110, a mechanical pump 112, the electrostatic filter arrangement 116, the UV generator 202 and a rechargeable battery 204.
    • 6. 发明专利
    • Layered polymer nanocomposite and method of manufacture thereof
    • GB202009110D0
    • 2020-07-29
    • GB202009110
    • 2020-06-16
    • HANSON PAUL STEPHEN
    • The layered polymer nanocomposite 100 comprises graphene nanoplatelets 104 dispersed in and stabilized with a polymer matrix 102 and a third-party material 106 having a non-zero band gap value. The 3rd party material 106 is preferably molybdenum disulphide, diamond, silicon, silicon dioxide, silicon nitride, silicon carbide, gallium nitride, gallium phosphate, gallium arsenide, lead sulphide, copper oxide, magnesium oxide, zinc oxide, titanium oxide, aluminium nitride, aluminium gallium nitride, aluminium gallium oxide, cubic boron nitride, germanium or piezoelectric ink. The polymer is preferably polyvinyl butyral, styrenic or acrylic. The nanocomposite is used in semi-permanent, anti-microbial, anti-viral and anti-abrasive coatings for door handles or tables, medical devices, remoulded products or on an assay substrate. The nanocomposite 100 is formed by transferring a third-party material 106 onto a substrate comprising graphene 104 in a polymeric binder 102 to form a circuit-primed substrate and then adding a seal layer onto the other surface.