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Reaction temperature predominately effected on the dimension where the average diameter increased from 49 nm to 200 nm with increasing temperature from 4 °C to 50 °C.
While for PA6/PPy nanofibers, the average diameter increased to 220 nm, and the surface became coarse.
The average diameter increased to approximately 70 ± 20 nm, and the density decreased to approximately 0.5 × 1010 cm−2.
The average diameter increased mildly by 50 nm (<25 %) after 7 days, while the variation of which increased along the extension of time.
The CNT@BaTiO3@PANI composites exhibit hierarchical structures and the average diameter increased after polymerization, assuring that the PANI was well coated on the surface of CNT@BaTiO3. Figure 1 Representative FE-SEM images of (a) CNTs, (b, c) CNT@BaTiO3 at different resolutions, and (d, e) CNT@BaTiO3@PANI at different resolutions.
In response to HU treatment, average diameter increased in the smc-5 (ok2421 ) and smc-6 (ok3294 ) mutants and in wild-type.
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After annealing, the density of droplets decreases to 6600 droplets/μm2 and the average diameter increases to 6.3 nm.
The results showed that with increased peak reflow temperature and pad diameter, the average joint diameter increased but the average joint height decreased.
As the solution concentration increased, average fiber diameter increased and water contact angle decreased.
After modification, surface area, pore volume decreased while average pore diameter increased to some extent.
Average pore diameter increased 78%and42%2% for concretes with w/c of 0.59 and 0.43, allowing the ingress of aggressive agents.
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