Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Universal Preparation Strategy for Ultradurable Antibacterial Fabrics through Coating an Adhesive Nanosilver Glue

View through CrossRef
Microbiological protection textile materials played an important role in the battle against the epidemic. However, the traditional active antimicrobial treatment of textiles suffers from narrow textile applicability, low chemical stability, and poor washability. Here, a high-strength adhesive nanosilver glue was synthesized by introducing nontoxic water-soluble polyurethane glue as a protectant. The as-prepared nanosilver glue could adhere firmly to the fiber surfaces by forming a flexible polymer film and could encapsulate nanosilver inside the glue. The as-prepared nanosilver had a torispherical structure with diameter of ~22 nm, zeta potential of −42.7 mV, and good dispersibility in water, and it could be stored for one year. Further studies indicated that the nanosilver glue had wide applicability to the main fabric species, such as cotton and polyester fabric, surgical mask, latex paint, and wood paint. The antimicrobial cotton and polyester fabrics were prepared by a simple impregnation–padding–baking process. The corresponding antimicrobial activity was positively correlated with nanosilver content. The treated fabrics (500 mg/kg) exhibited ultrahigh washing resistance (maintained over 99% antibacterial rates for 100 times of standard washing) and wear resistance (99% antibacterial rates for 8000 times of standard wearing), equivalent breathability to untreated fabric, improved mechanical properties, and good flexibility, demonstrating a potential in cleanable and reusable microbiological protection textiles.
Title: Universal Preparation Strategy for Ultradurable Antibacterial Fabrics through Coating an Adhesive Nanosilver Glue
Description:
Microbiological protection textile materials played an important role in the battle against the epidemic.
However, the traditional active antimicrobial treatment of textiles suffers from narrow textile applicability, low chemical stability, and poor washability.
Here, a high-strength adhesive nanosilver glue was synthesized by introducing nontoxic water-soluble polyurethane glue as a protectant.
The as-prepared nanosilver glue could adhere firmly to the fiber surfaces by forming a flexible polymer film and could encapsulate nanosilver inside the glue.
The as-prepared nanosilver had a torispherical structure with diameter of ~22 nm, zeta potential of −42.
7 mV, and good dispersibility in water, and it could be stored for one year.
Further studies indicated that the nanosilver glue had wide applicability to the main fabric species, such as cotton and polyester fabric, surgical mask, latex paint, and wood paint.
The antimicrobial cotton and polyester fabrics were prepared by a simple impregnation–padding–baking process.
The corresponding antimicrobial activity was positively correlated with nanosilver content.
The treated fabrics (500 mg/kg) exhibited ultrahigh washing resistance (maintained over 99% antibacterial rates for 100 times of standard washing) and wear resistance (99% antibacterial rates for 8000 times of standard wearing), equivalent breathability to untreated fabric, improved mechanical properties, and good flexibility, demonstrating a potential in cleanable and reusable microbiological protection textiles.

Related Results

Surface Tension-Based Ultra-Micro Precision Dispensing Method For Micro-Scale Manufacturing
Surface Tension-Based Ultra-Micro Precision Dispensing Method For Micro-Scale Manufacturing
Abstract Due to the rapid development of precision micro-manufacturing technology, it has made higher requirements for micro-connection and micro-assembly technologies. An ...
Surface nano-structured materials to control bacterial contamination
Surface nano-structured materials to control bacterial contamination
The spread of bacteria and infections, initially associated with an increased number of hospital-acquired infections, has now extended into the community causing severe and difficu...
Experimental Study on the Structural Behavior of Secondary Barrier of MARK-III LNG CCS
Experimental Study on the Structural Behavior of Secondary Barrier of MARK-III LNG CCS
The market of LNG (Liquefied Natural Gas) carrier is remarkably expanded in the last four or five years, and lots of LNG vessels are being built in many shipyards in the world. Mem...
Effect of radiation therapy on the dentin bond strength of a universal adhesive
Effect of radiation therapy on the dentin bond strength of a universal adhesive
Abstract Background Successful restorative procedures, particularly for patients undergoing head and neck radiotherapy, rely on a robust adhesive...
Pengaruh Edible Coating terhadap Stabilitas Warna Resin Akrilik
Pengaruh Edible Coating terhadap Stabilitas Warna Resin Akrilik
Abstract: Disadvantages of heat-polymerized acrylic resin as a denture base material are porosity and water absorption, which can cause aesthetic problems due to causing discolorat...
Investigating the Antibacterial Characteristics of Japanese Bamboo
Investigating the Antibacterial Characteristics of Japanese Bamboo
Natural materials, such as bamboo, is able to withstand the rough conditions posed by its environment, such as resistance to degradation by microorganisms, due to notable antibacte...

Back to Top