We produced novel composite nanofibers based on poly(6,6′-((2-methyl-5-((E)-4-((E)-prop-1-en-1-yl)styryl)-1,4-phenylene)bis(oxy))dihexanoic acid)/poly(lactic acid) (PDMP/PLA), using electrospinning technique. The composite nanofibers have a diameter in the range of 50–150 nm and present a novel morphology consisting of spontaneously stacked nanofibers creating a “wall-like” structure that then collectively form a “honeycomb” structure. As low as 0.5–1 wt% of the photoluminescent PDMP was able to produce this type of morphology. The pore size depends on the amount of PDMP incorporated in the nanofibers. The highly fluorescent and porous nanofibers mats provide good biosensing substrates. We provide evidence that the composite nanofibers can ...
In this work, biotin surface functionalized hydrophilic non-water-soluble biocompatible poly(lactic ...
In tissue engineering, nanofibrous scaffolds can achieve better biological responses than microfibro...
The photoluminescent nanofibers (PLNs) were successfully produced by incorporating α-NaYF4:Eu3+ nano...
Nanofibers, by virtue of their extremely large surface area to volume ratio, promise to be an excell...
A new method for fabricating fluorescent nanofibers as sensing materials was developed via the elect...
Electrospinning has been explored to fabricate high aspect ratio nanofibers with high surface area f...
Fiber structures with nanoscale diameters offer many fascinating features, such as excellent mechani...
Nanofabrication techniques produce materials with enhanced physicochemical properties through a comb...
The electrospinning technique allows the production of micro- and nanofibers, which can be used to o...
A modular strategy toward (bio)functional nanofiber meshes by electrospinning is described. In contr...
Electrospinning has become one of the most interesting techniques for fabricating nanofibers for mul...
This photograph originally appeared in the 2017 Research student photography and image competition h...
Nanofibers and nanotubes based on polymers offer a broad range of applications in areas such as phot...
We have fabricated fluorescing polystyrene/dicyanopyrazine-linked porphyrin (PS/4-TDCPP) nanofibers ...
Electrospinning is widely used for the synthesis of nanofibrous non-woven membranes. The fabricated ...
In this work, biotin surface functionalized hydrophilic non-water-soluble biocompatible poly(lactic ...
In tissue engineering, nanofibrous scaffolds can achieve better biological responses than microfibro...
The photoluminescent nanofibers (PLNs) were successfully produced by incorporating α-NaYF4:Eu3+ nano...
Nanofibers, by virtue of their extremely large surface area to volume ratio, promise to be an excell...
A new method for fabricating fluorescent nanofibers as sensing materials was developed via the elect...
Electrospinning has been explored to fabricate high aspect ratio nanofibers with high surface area f...
Fiber structures with nanoscale diameters offer many fascinating features, such as excellent mechani...
Nanofabrication techniques produce materials with enhanced physicochemical properties through a comb...
The electrospinning technique allows the production of micro- and nanofibers, which can be used to o...
A modular strategy toward (bio)functional nanofiber meshes by electrospinning is described. In contr...
Electrospinning has become one of the most interesting techniques for fabricating nanofibers for mul...
This photograph originally appeared in the 2017 Research student photography and image competition h...
Nanofibers and nanotubes based on polymers offer a broad range of applications in areas such as phot...
We have fabricated fluorescing polystyrene/dicyanopyrazine-linked porphyrin (PS/4-TDCPP) nanofibers ...
Electrospinning is widely used for the synthesis of nanofibrous non-woven membranes. The fabricated ...
In this work, biotin surface functionalized hydrophilic non-water-soluble biocompatible poly(lactic ...
In tissue engineering, nanofibrous scaffolds can achieve better biological responses than microfibro...
The photoluminescent nanofibers (PLNs) were successfully produced by incorporating α-NaYF4:Eu3+ nano...