A novel durable intumescent flame retardant coating, based on metal oxide nanoparticles (NPs) and biomacromolecules, was designed and applied on cotton fabrics. Specifically, different TiO2 NPs/proteins systems were deposited by dip-pad-drycure process and the morphology of the resulting coating were assessed by SEM analysis. Enhancement of durability (i.e. resistance to washing treatments) was verified by release tests carried out in static and dynamic conditions. Flammability and cone calorimetry tests were performed for evaluating the fire behavior of the treated fabrics. More specifically, in horizontal flame spread tests, the different nanoparticle/protein based coatings provided an increase of the total burning time and a decrease of...
The present paper critically analyzes the potential for commercially available nanoparticles for enh...
In study, morphologically well-defined TiO2 nano particles (NPs), prepared by sol-gel method was coa...
The present paper critically analyzes the potential for commercially available nanoparticles for enh...
Cellulose-based materials almost exist in all aspects of everyday life and are essential to people’s...
A strategy for the design of cotton flame retardant coatings is described, exploiting the natural in...
Due to the costs associated with processing, materials, and the inherent difficulties in applying du...
Fabric-based materials such as textiles and papers are widely used in our daily life. However, most ...
The hydrophilicity and inherent flammability of cotton textiles severely limit their usage. To solve...
In this study, titanium dioxide (TiO2) was used as coating compound to add self-cleaning and antibac...
Flame retardants (FRs) for textiles have undergone and still undergo a significant evolution toward ...
548-554Oxidative thermal degradation and flame retardant behaviour of cotton fabric coated with intu...
The present paper is aimed to review the state of the art on the novel and emerging techniques recen...
It is well described in the literature that whey proteins are able to form coatings, which exhibit h...
The combination of egg white proteins (W) and hypophosphorous acid (HA) was used for developing a fl...
FRONT is an innovative project with the main objective to produce textile fabrics resistant to fire ...
The present paper critically analyzes the potential for commercially available nanoparticles for enh...
In study, morphologically well-defined TiO2 nano particles (NPs), prepared by sol-gel method was coa...
The present paper critically analyzes the potential for commercially available nanoparticles for enh...
Cellulose-based materials almost exist in all aspects of everyday life and are essential to people’s...
A strategy for the design of cotton flame retardant coatings is described, exploiting the natural in...
Due to the costs associated with processing, materials, and the inherent difficulties in applying du...
Fabric-based materials such as textiles and papers are widely used in our daily life. However, most ...
The hydrophilicity and inherent flammability of cotton textiles severely limit their usage. To solve...
In this study, titanium dioxide (TiO2) was used as coating compound to add self-cleaning and antibac...
Flame retardants (FRs) for textiles have undergone and still undergo a significant evolution toward ...
548-554Oxidative thermal degradation and flame retardant behaviour of cotton fabric coated with intu...
The present paper is aimed to review the state of the art on the novel and emerging techniques recen...
It is well described in the literature that whey proteins are able to form coatings, which exhibit h...
The combination of egg white proteins (W) and hypophosphorous acid (HA) was used for developing a fl...
FRONT is an innovative project with the main objective to produce textile fabrics resistant to fire ...
The present paper critically analyzes the potential for commercially available nanoparticles for enh...
In study, morphologically well-defined TiO2 nano particles (NPs), prepared by sol-gel method was coa...
The present paper critically analyzes the potential for commercially available nanoparticles for enh...