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Polymer Blends Based on 1-Hexadecyl-3-methyl Imidazolium 1,3-Dimethyl 5-Sulfoisophthalate Ionic Liquid: Thermo-Mechanical, Surface Morphology and Antibacterial Properties
被引:2
|作者:
Zampino, Daniela C.
[1
]
Samperi, Filippo
[1
]
Mancuso, Monique
[2
,3
]
Ferreri, Tiziana
[4
]
Ferreri, Loredana
[4
]
Dattilo, Sandro
[1
]
Mirabella, Emanuele F.
[1
]
Carbone, Domenico C.
[1
]
Recca, Giuseppe
[1
]
Scamporrino, Andrea A.
[1
]
Novello, Elisabetta
[1
]
Puglisi, Concetto
[1
]
机构:
[1] Inst Polymers Composites & Biomat IPCB CNR, Sect Catania, Via Paolo Gaifami 18, I-95126 Catania, Italy
[2] Inst Biol Resources & Marine Biotechnol IRBIM CNR, Sect Messina, Spianata San Raineri 86, I-98122 Messina, Italy
[3] Sicily Marine Ctr, Dept Integrat Marine Ecol, Stn Zool Anton Dohrn, Contrada Porticatello 29, I-98167 Messina, Italy
[4] Inst Biomol Chem ICB CNR, Sect Catania, Via Paolo Gaifami 18, I-95126 Catania, Italy
来源:
关键词:
antimicrobial polymer;
ionic liquid blends;
thermal properties;
SEM;
static contact angle;
mechanical properties;
Staphylococcus epidermidis;
Escherichia coli;
THERMAL-DEGRADATION;
ANTIMICROBIAL ACTIVITY;
SEBS;
PLASTICIZERS;
RESISTANCE;
PYROLYSIS;
STABILITY;
ADDITIVES;
EVOLUTION;
COPOLYMER;
D O I:
10.3390/polym15040970
中图分类号:
O63 [高分子化学(高聚物)];
学科分类号:
070305 ;
080501 ;
081704 ;
摘要:
In this study, antibacterial polymer blends based on Polyvinyl Chloride (PVC) and Polystyrene-Ethylene-Butylene-Styrene (SEBS), loaded with the ionic liquid (IL) 1-hexadecyl-3-methyl imidazolium 1,3-dimethyl 5-sulfoisophthalate (HdmimDMSIP) at three different concentrations (1%, 5%, and 10%), were produced. The IL/blends were characterized by their thermo-mechanical properties, surface morphology, and wettability. IL release from the blends was also evaluated. The agar diffusion method was used to test the antibacterial activity of the blends against Staphylococcus epidermidis and Escherichia coli. Results from thermal analyses showed compatibility between the IL and the PVC matrix, while phase separation in the SEBS/IL blends was observed. These results were confirmed using PY-GC MS data. SEM analyses highlighted abundant IL deposition on PVC blend film surfaces containing the IL at 5-10% concentrations, whereas the SEBS blend film surfaces showed irregular structures similar to islands of different sizes. Data on water contact angle proved that the loading of the IL into both polymer matrices induced higher wettability of the blends' surfaces, mostly in the SEBS films. The mechanical analyses evidenced a lowering of Young's Modulus, Tensile Stress, and Strain at Break in the SEBS blends, according to IL concentration. The PVC/IL blends showed a similar trend, but with an increase in the Strain at Break as IL concentration in the blends increased. Both PVC/IL and SEBS/IL blends displayed the best performance against Staphylococcus epidermidis, being active at low concentration (1%), whereas the antimicrobial activity against Escherichia coli was lower than that of S. epidermidis. Release data highlighted an IL dose-dependent release. These results are promising for a versatile use of these antimicrobial polymers in a variety of fields.
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