Publications

The impact of relative humidity during electrospinning on the morphology and mechanical properties of nanofibers

Electrospinning is an efficient and flexible method for nanofiber production, but it is influenced by many systemic, process, and environmental parameters that govern the electrospun product morphology.

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From design of bio-based biocomposite electrospun scaffolds to osteogenic differentiation of human mesenchymal stromal cells

Electrospinning coupled with electrospraying provides a straightforward and robust route toward promising electrospun biocomposite scaffolds for bone tissue engineering

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Aramid composites impregnated with different reinforcement: Nanofibers, nanoparticles and nanotubes

In this study, the electrospun nanofibers, nanoparticles and nanotubes were used as reinforcement in order to improve mechanical properties of materials for ballistic protection. 

 

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Differentiation of neuronal stem cells into motor neurons using electrospun poly-l-lactic acid/gelatin scaffold

Neural stem cells (NSCs) provide promising therapeutic potential for cell replacement therapy in spinal cord injury (SCI).

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Infuence of solvent on the stability of electrospinning of PMMA nanofibers

In this paper the process of electrospinning of PMMA nanofibers was investigated. The influence of process parameters (type of solvent, solution concentration, flow rate, distance of needle and collector) on the nanofibers diameter uniformity and porosity was investigated.

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