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Flame retardant properties of plasma pre-treated/diamond-like carbon (DLC) coated cotton fabrics

Academic Article
Publication Date:
2015
abstract:
Textiles with superior anti-flammability properties combined with minimal environmental impact are extremely necessary to reduce fire-related issues. In this regard, diamond-like carbon (DLC) coatings on cotton fabrics may represent promising candidates as potential flame-retardant (FR) materials. Herein, superhydrophobic and fire-resistant cotton fabrics were fabricated through a two-step plasma strategy by alternately exposing substrates to H2 and O2 plasma pre-treatments and subsequent DLC deposition. Fourier transform-infrared spectroscopy analysis has revealed that different plasma pre-treatments can impose surface modifications on the chemical structure of cotton, especially in carboxylic and hydroxyl groups, leading to a radical alteration of surface roughness and of the crystalline cellulosic external structure. These changes deeply influenced the growth of DLC thin films and the surface properties of cotton fabric because of the combination of a hierarchical structure and surface chemistry as verified using field emission gun-scanning electron microscopy and water contact angle measurements. The effects of both specific gases used in the pretreatment step and duration of pre-treatment were analysed and compared using thermogravimetric analyses. The H2-pre-treated DLC cottons exhibited good potential as an FR material, showing improved thermal stability in respect to untreated cotton, as evidenced by increased ignition times. Moreover, vertical burning tests have demonstrated that DLCcotton systems exhibit enhanced flammability resistance.
Iris type:
01.01 Articolo in rivista
Keywords:
Flame retardant; Diamond-like coating; Plasma treatments; Cotton fabrics.
List of contributors:
Caschera, Daniela; Federici, Fulvio; Ingo, GABRIEL MARIA; Toro, ROBERTA GRAZIA; Cortese, Barbara; Gigli, Giuseppe; Riccucci, Cristina
Authors of the University:
CASCHERA DANIELA
CORTESE BARBARA
FEDERICI FULVIO
RICCUCCI CRISTINA
TORO ROBERTA GRAZIA
Handle:
https://iris.cnr.it/handle/20.500.14243/293374
Published in:
CELLULOSE (DORDR., ONLINE)
Journal
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