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Fig. 2 SEM images of the as spun PAN nanofibers from single nozzle electrospinning.
a CNFs from single nozzle and b HCNFs from normal coaxial electrospinning.
Comparison with the CNFs from single nozzle electrospinning, all HCNFs samples show relatively lower electrical conductivity.
For comparison, the morphologies of as spun PAN nanofibers from single nozzle electrospinning were also observed by SEM as shown in Fig. 2.
a CNFs from single nozzle and HCNFs from b normal coaxial nozzle, c inward coaxial nozzle, and d outward coaxial nozzle.
During the process, a camcorder was used to observe the morphological variation of NFES jets which showed from single nozzle to triple nozzle (Fig. 6b d).
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Drop formation from single nozzles under pulsed flow conditions has been investigated.
While the HCNFs produced from the outward coaxial nozzle and the CNFs produced from a single nozzle exhibit a type-IV isotherm (monolayer followed by multilayer adsorption), which indicates the presence of not only the micropores but also mesoporous structures [11].
Considering the conductance values, the HCNFs produced from the outward coaxial nozzle also show a much higher value than the CNFs produced from the single nozzle.
The effect of an applied electric potential on the dynamics of gas bubble formation from a single nozzle in glycerol was studied experimentally.
Microscope images of droplet dispensing from the microfluidic droplet dispenser for the case of a single nozzle (A) and dual-nozzle microfluidic device (B).
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