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3D morphology of H-TiO2 nanorods.
Our results could be related to the following factors: Fig. 7 Sheet resistances of FTO and RTA treated FTO substrates compared with literature (i) 3D morphology of H-TiO2 nanorods .
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Their progeny was heat shocked at 37°C water bath three times per day 1 h each for 2 days starting from 12 h APF stage and MB morphology of hs-GAL4-EcR.LBD/UAS-let-7 and hs-GAL4-usp.LBD/UAS-let-7 was compared to MBs of control animals hs-GAL4-EcR.LBD/TM6 and hs-GAL4-usp.LBD/TM6, respectively.
To study the possible change of morphology and crystal phase of H-TiO2 nanorods, scanning electron microscopy (SEM) images and X-ray diffraction (XRD) spectra were collected.
No significant changes in size and morphology of MHCC97-H and HCCLM3 were found using light microscope (data not shown).
The morphology of 0.52-Na-H-Bus after reflux treatment for 72 h is dominated by elongated fibers (~5 μm) of crystalline todorokite (not shown).
XRD, SEM and TEM results indicated that three types of morphologies, including h-WO3 rods with exposed (2 0 0) facets, h-WO3 nanosheets with exposed (0 0 2) facets and h-WO3 with corn cob-like structure and no preferred direction, could be obtained by tuning the capping agents and pH.
Noteworthy, our results revealed that the addition of exogenous farnesol at concentrations below 25 μM, which do not affect P. brasiliensis growth, impaired the transition from yeast to mycelium, as observed by microscopic analyses of cellular morphology after 24 h and 48 h incubation.
It was found that, after annealing, the 1-D morphology of AZO(H -CdS (3) H -CdS significant change.
The further detailed morphology of the 6-h etching samples was detected by TEM.
This observation is in accordance with the significant change observed for HepG2 cell morphology after 24 h of treatment with 0.5-1 mg/l (0.9 - 1.8 μM) of the Haloferax Mediterranean (hmERP) extract [ 44].
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