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Tensile strength around 4 MPa is found with smooth fiber mats.
The fiber matrix bond characteristics improved as the embedment length of fiber increased, especially for smooth fiber.
It was found that the beaded fiber mats could prolong the release of methylene blue, comparing to the smooth fiber mats without beads.
The release test of methylene blue from the beaded fiber mats was carried out in comparison to that of the smooth fiber mats without beads.
In contrast with the smooth fiber surface of pristine corn straw, the high magnification SEM image of the prepared superhydrophobic/superoleophilic corn straw fiber showed a surface layer of solid spherical granules, with an average diameter of 40 50 nm (Fig. 2c), which was attributed to the compact deposition of the SiO2 particles.
Taking the curvature of the fibers into consideration, which is unavoidable for characterizing bending effects, the smooth fiber lay-down model is developed: The non-differentiable Brownian motion in (1) is replaced by a spherical Ornstein-Uhlenbeck process, see [7] and [15].
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CYCo produced wrinkled beads and smooth fibers.
The high conductivity of DMF might have favored the formation of smooth fibers of smaller diameter.
Smooth fibers with a very small amount of beads resulted when electrospinning was done with the dietary fiber supernatant amended with 8% (w/v) PVA.
It has been observed that hooked end fibers have shown better interface bond compared to the smooth fibers.
Smooth fibers with diameter of 10 μm were found to support an optimal cell seeding and attachment within the micrometer range analyzed.
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