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Electrospun <scp>PGS</scp>/<scp>PCL</scp> nanofibers: From straight to sponge and <scp>spring-like</scp> morphology
Facile strategy for improvement properties of whey protein isolate/walnut oil bio-packaging films: Using modified cellulose nanofibers
Highly conductive Faradaic artificial muscle based on nanostructured polypyrrole-bis(trifluoromethylsulfonyl)imide synthesized onto electrospun polyurethane nanofibers
Highly conductive Faradaic artificial muscle based on nanostructured polypyrrole-bis(trifluoromethylsulfonyl)imide synthesized onto electrospun polyurethane nanofibers
Highly conductive Faradaic artificial muscle based on nanostructured polypyrrole-bis(trifluoromethylsulfonyl)imide synthesized onto electrospun polyurethane nanofibers
Highly conductive Faradaic artificial muscle based on nanostructured polypyrrole-bis(trifluoromethylsulfonyl)imide synthesized onto electrospun polyurethane nanofibers
Gaining insight into electrolyte solution effects on the electrochemomechanical behavior of electroactive PU/PPy nanofibers: Introducing a high-performance artificial muscle
Gaining insight into electrolyte solution effects on the electrochemomechanical behavior of electroactive PU/PPy nanofibers: Introducing a high-performance artificial muscle
Gaining insight into electrolyte solution effects on the electrochemomechanical behavior of electroactive PU/PPy nanofibers: Introducing a high-performance artificial muscle
Gaining insight into electrolyte solution effects on the electrochemomechanical behavior of electroactive PU/PPy nanofibers: Introducing a high-performance artificial muscle
Fabrication and characterization of the composite nanofibers of polyacrylonitrile/fluorescent core-shell silica particles with their potential use for anticounterfeiting purposes in the textile industry
Fast fluorescent screening assay and dual electrochemical sensing of bacterial infection agent (Streptococcus agalactiae) based on a fluorescent-immune nanofibers
Interplay of liquid-liquid and solid-liquid phase separation mechanisms in porosity and polymorphism evolution within poly(vinylidene fluoride) nanofibers
MANUFACTURING AND ALIGNING THE PCL NANOFIBERS ALONG REQUIRED DIRECTIONS BY SWITCHING METHOD OF ELECTROSPINNING VOLTAGE FIELD FOR DESIGNING SCAFFOLDS IN TISSUE ENGINEERING
MANUFACTURING AND ALIGNING THE PCL NANOFIBERS ALONG REQUIRED DIRECTIONS BY SWITCHING METHOD OF ELECTROSPINNING VOLTAGE FIELD FOR DESIGNING SCAFFOLDS IN TISSUE ENGINEERING
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