and the fiber aggregate on the collector [16]. In this process some
parameters will impress such as temperature and humidity [17].
Scattering of some nanomaterials like nanotitania (TiO2) within
polymeric fibers (nanocomposites) can enhance the fiber properties
such as conductivity, dyeability and strength. Of course these
properties depend on structure and amount of used nanomaterials
[18–21]. TiO2 has strong oxidation characteristics, excellent
chemical stability and also competitive cost effectiveness [22].
One of the principal applications of nano-TiO2 is using as catalytic
support [23]. The photocatalytic activity of nano-TiO2 is depending
on its phase and nano-TiO2 has three phases: Anatase, Rutile and
Brookite [24]. Another photocatalysts materials which can be
activate under UV irradiation is strontium titanate (SrTiO3) and
this property is based on its wide band gap [25,26]. The band gap
similarity of nano-SrTiO3 and nano-TiO2 (Eg = 3.2 eV) [25,27–29]
make these two materials for coupling each other in order to
supporting them [30]. Due to its large polarization and high
dielectric constant [31] and because of its excellent physical and
chemical properties such as structure and thermal stability; SrTiO3
is being considered as one of the favorable photocatalysts [32].
In this work, photoactive nylon (polyamide 66) fabrics were
prepared by electrospinning polyamide 66 nanofibers containing
nanoparticles (TiO2, SrTiO3 and ZnO) onto the surface of the nylon
fabrics. This allows us to introduce a self-cleaning fabric which can
be use in air and water filtration or protective clothing.
and the fiber aggregate on the collector [16]. In this process someparameters will impress such as temperature and humidity [17].Scattering of some nanomaterials like nanotitania (TiO2) withinpolymeric fibers (nanocomposites) can enhance the fiber propertiessuch as conductivity, dyeability and strength. Of course theseproperties depend on structure and amount of used nanomaterials[18–21]. TiO2 has strong oxidation characteristics, excellentchemical stability and also competitive cost effectiveness [22].One of the principal applications of nano-TiO2 is using as catalyticsupport [23]. The photocatalytic activity of nano-TiO2 is dependingon its phase and nano-TiO2 has three phases: Anatase, Rutile andBrookite [24]. Another photocatalysts materials which can beactivate under UV irradiation is strontium titanate (SrTiO3) andthis property is based on its wide band gap [25,26]. The band gapsimilarity of nano-SrTiO3 and nano-TiO2 (Eg = 3.2 eV) [25,27–29]make these two materials for coupling each other in order tosupporting them [30]. Due to its large polarization and highdielectric constant [31] and because of its excellent physical andchemical properties such as structure and thermal stability; SrTiO3is being considered as one of the favorable photocatalysts [32].In this work, photoactive nylon (polyamide 66) fabrics wereprepared by electrospinning polyamide 66 nanofibers containingnanoparticles (TiO2, SrTiO3 and ZnO) onto the surface of the nylonfabrics. This allows us to introduce a self-cleaning fabric which canbe use in air and water filtration or protective clothing.
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