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Similarly, at the increased AT of 400 °C, with the increased lD, the connected wiggly nanostructures gradually developed into Au droplets as shown in Figs. 4c and 5c and formed the round-dome shaped Au droplets at higher ATs as shown in Figs. 4d and e and 5d and e due to favorable diffusion.
Overall, under the fixed DA and DT, the increased AT resulted in the increased dimensions in both average height and diameter and the average density was gradually decreased as can be expected with the simple diffusion theory.
With the increased AT, the Au adatoms can obtain increased thermal energy to diffuse further, in other words, the increased l D. Given that E I < E Au at increased ATs, the nucleus can absorb more adatoms with longer l D and this can result in the increased dimension of Au NPs.
In general, with the increased AT, the configuration of the nanostructure has changed as well as the size of Au nanostructures increased whereas the density decreased.
In addition, with the increased AT between 700 and 900 °C, the size of the Au NPs was gradually increased accompanied with the decreased AD.
Also, it is clearly observed from the AFM images in Fig. 4a, b that the AD of Au NPs was decreased with the increased AT.
Similar(50)
The absorption intensities derived from the intermediates increased at the initial stage and then decreased gradually.
In agreement with previous studies, the affinity increased at the higher pH.
The immunoreactivity increased at the early time points and was extended up to 7 days.
For example, the PCEPI for the third quarter of 2011 increased at an annual rate of 2.3percentt and the core rate increased slightly less at 2.1percentt.
In the presence of IFNQ, the accumulation increased at 10°C.
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