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These images clearly depicted that there was no correlation between the tip diameter used and the average fiber diameter obtained in the solution electrospinning process, but a broader range of fiber diameter was obtained with a bigger needle diameter.
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Because mixing should occur across the interface between the solutions in the absence of turbulent flow, the tip diameter of 1.71 μm, measured perpendicular to the inner divider, is used as the o.d.
The tip diameter was 10 μm.
The tip diameter was 5 mm.
This phenomenon increases the average tip diameter and hides the decrease of the tip diameter during NW axial growth.
At the same time, the tip diameter increases at a rate higher than the base diameter.
As a consequence, the tip diameter can exceed the base diameter at 90 min growth duration.
Increase in the tip diameter was found to directly increase the fiber diameter, and fibers would easily split when they have big tip diameters [21, 22].
Like many other electrospinning parameters, the effect of the tip diameter on the fiber diameter is not absolute.
The invariance of the tip diameter can be explained by two reasons.
Secondly, the decrease of tip diameter is hidden by another phenomenon: once the Sn is exhausted on the tip, the tip diameter will start to increase due to the coating by a-Si H.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com