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The larger in diameter reflects that the voltage threshold must be exceeded for the formation of stable solution jet.
Due to the presence of a premixing chamber in the inner nozzle, the solution and anti-solvent can be molecularly dispersed before the formation of the solution jet.
As the conductivity of the solution improved, stretching of the solution jet will increase as a result of higher level of charges carried by the solution [42].
This flow cell was designed to produce a vertically impinging solution jet onto the sample surface within 2 mm of the tip contact [59].
The initial agglomerated shape may cause some difficulties for the solution jet to form the continuous compound of Taylor's cone at the end of the nozzle.
In this case, a relatively smaller amount of water diffused into the solution jet causes a delayed solidification, then leaving enough time for the jet to elongate due to Coulomb forces and whipping instability during traveling to the collector.
Similar(49)
13– 17 Electrospinning is especially effective in this respect, producing self-poled piezoelectric nanofibers due to the very high stretching forces exerted on electrified solution jets.
This might due to the increase of the solution conductivity leading to the increase of the solution-jet instability in the electric field [35].
It accounts for the polymer solution viscoelasticity, jet interaction with the surrounding high-speed air flow, and solvent evaporation and jet solidification.
The precursor solution is jetted by the high-voltage power supply via the spinneret and the syringe pump, and nanofibers can then be obtained on the collector.
By using the similarity solutions for jets by taking into account the virtual origins for both velocity and concentration, it has been predicted that the flow velocity along a stoichiometric contour has a maximum value.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com