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Zhou et al. [48] obtained thinner LaMnO3 nanofibers (50 100 nm) by a semblable way using lanthanum acetate and manganese acetate as raw materials and an applied electric voltage of 15 kV between the collector and the needle tip.
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The structural characteristics of obtained thin films were examined by using of Raman spectroscopy, SEM and AFM measurement.
The characterization of obtained thin films was performed by XRD, Raman spectroscopy, SEM and XPS.
The obtained thin films showed an obvious "red-shift" in the optical absorption spectrum.
The characteristics and mechanical properties of the obtained thin films are investigated.
The obtained thin film was preliminarily irradiated with UV light and then heated up to 400 K in vacuum.
After repeating the spin coating and drying procedures for ten times to obtain the required thickness, the obtained thin film was put into a furnace and calcined in air at 550°C for 2 h to yield the ZnO seed layer.
The dependence of the polymer resistance on the electrical charge passed during the polymerization is related to the different morphology of the obtained thin films.
The thickness of the obtained thin films (200 nm to 1.6 μm) was controlled by the times and/or rotation speed (300 to 1000 rpm) of the spin coating.
Obtained thin films can be satisfy described as a cubic with lattice parameter a = 3.965 Å and tetragonal with lattice parameters a = 5.482 Å and c = 7.746 Å for BST and LLT respectively.
We induced ischaemic damage by maintaining freshly obtained thin cylindrical kidney biopsy specimens under tissue culture conditions.
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