共 64 条
Surface modification of highly hydrophobic polyester fabric coated with octadecylamine-functionalized graphene nanosheets
被引:50
作者:
Achagri, Ghizlane
[1
]
Essamlali, Younes
[2
]
Amadine, Othmane
[2
]
Majdoub, Mohamed
[2
]
Chakir, Achraf
[1
]
Zahouily, Mohamed
[1
,2
]
机构:
[1] Univ Hassan 2, FST, URAC 24, Lab Mat Catalyse & Valorisat Ressources Nat, Casablanca, Morocco
[2] MAScIR Fdn, VARENA Ctr, Rabat Design, Rue Mohamed El Jazouli, Rabat 10100, Morocco
关键词:
OIL/WATER SEPARATION;
FACILE FABRICATION;
STRAIN SENSOR;
ROBUST SUPERHYDROPHOBICITY;
CHEMICAL-REDUCTION;
GRAPHITE OXIDE;
COTTON FABRICS;
CROSS-LINKING;
TEXTILES;
COATINGS;
D O I:
10.1039/d0ra02655g
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
This study focuses on the design of highly hydrophobic polyester fabrics (PET) coated with organophilic graphene nanosheets (G-ODA) through a simple, cost-effective and scalable coating method. The organophilic graphene oxide was successfully synthesized by covalently grafting a long chain fatty amine on its surface and was fully characterized by various physicochemical techniques. G-ODA was coated at different loadings onto the PET fabric ranging from 1 to 7 wt% to produce uniformly dispersed PET@G-ODA fabrics with multifunctional performances. FTIR has confirmed the formation of strong interfacial interaction between the PET and G-ODA functional groups. Moreover, the produced PET@G-ODA fabrics resulted in achieving enhanced thermal stability as well as excellent water repellency compared to the pristine PET. Water contact angle measurements showed a tremendous enhancement of surface hydrophobicity up to 148 degrees with 7 wt% loading of G-ODA. Tensile strength tests revealed that our fabric exhibited excellent mechanical properties compared to neat PET. In addition, the designed PET@G-ODA fabrics demonstrated excellent oil/water separation efficiency for different oil/water mixtures. The obtained results are very promising in terms of designing and producing functional PET fabrics with improved thermal and surface proprieties.
引用
收藏
页码:24941 / 24950
页数:10
相关论文