FIELD: medicine.
SUBSTANCE: invention relates to medicine, namely to a method for imparting antibacterial properties to door handles. The method consists in using a surface coating. Door handles are coated with a 10 nm thick alumina substrate and then a 25 nm or more thick titanium and vanadium oxide nanofilm using atomic layer deposition technology. The coating is applied at a temperature of 150 degrees Celsius.
EFFECT: providing door handles of any design and shape: durable, wear-resistant, uniform and non-toxic nanofilm of adjustable thickness with antibacterial properties, reducing the cost of coating using inexpensive, non-toxic, sufficiently strong and affordable materials (vanadium and titanium oxides).
1 cl, 7 dwg
Title | Year | Author | Number |
---|---|---|---|
METHOD OF IMPARTING ANTIBACTERIAL PROPERTIES TO DISPOSABLE STERILE MEDICAL MASKS | 2023 |
|
RU2822654C1 |
METHOD FOR IMPROVING THE FUNCTIONAL PROPERTIES OF MESH IMPLANTS FOR HERNIAL PLASTY | 2020 |
|
RU2756124C1 |
METHOD FOR IMPROVING THE ECHOGENIC PROPERTIES OF NEEDLES FOR TARGETED PUNCTURE AND ASPIRATION BIOPSY | 2021 |
|
RU2763819C1 |
METHOD OF OBTAINING SURGICAL SUTURE MATERIALS WITH ANTIBACTERIAL PROPERTIES BY ATOMIC LAYER DEPOSITION | 2022 |
|
RU2806060C1 |
METHOD FOR INCREASING SHELF LIFE OF FOOD PRODUCTS USING ANTIBACTERIAL FUNCTIONAL NANOMATERIALS OBTAINED BY ATOMIC LAYER DEPOSITION | 2022 |
|
RU2807483C1 |
METHOD FOR PRODUCING ALUMINUM-MOLYBDENUM OXIDE NANOFILMS BY ANHYDROUS ATOMIC LAYER DEPOSITION METHOD | 2023 |
|
RU2808961C1 |
METHOD FOR OBTAINING MOLYBDENUM-DOPED TITANIUM DIOXIDE NANOFILMS USING ATOMIC LAYER DEPOSITION | 2022 |
|
RU2802043C1 |
METHOD FOR IMPROVING GROWTH AND ADHESION OF COPPER NANOFILMS ON SILICON SUBSTRATES USING MOLECULAR LAYER DEPOSITION TECHNOLOGY | 2022 |
|
RU2800189C1 |
METHOD FOR PRODUCING THIN MEMBRANES OF SILICON CARBIDE ON SILICON BY PYROLYSIS OF POLYMER MEMBRANES OBTAINED BY MOLECULAR LAYER PRECIPITATION | 2020 |
|
RU2749573C1 |
METHOD FOR FORMING TUNGSTEN CARBIDE FILMS ON A TUNGSTEN-SILICON HETEROSTRUCTURE BY PYROLYSIS OF A POLYAMIDE FILM OBTAINED BY MOLECULAR LAYER DEPOSITION | 2022 |
|
RU2784496C1 |
Authors
Dates
2023-03-06—Published
2022-06-01—Filed