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Figure 2 describes the I-V characteristics of the cells under illumination with a PEDOT PSS (Aldrich 483095) anode buffer layer treated with UV-ozone for various times.
It is indicated that the seed layer treated with plasma produced ZnO nanorods that had a more oxygen vacancy than those grown from seed layer untreated with plasma.
Performance of the cells under illumination with a PEDOT PSS (Clevios P VP Al 4083) anode buffer layer treated with UV-ozone for various times.
Performance of the cells under illumination with a PEDOT PSS (Aldrich 483095) anode buffer layer treated with UV-ozone for various times.
Consequently, a nano-patterning of the crystalline ZnO nanorods grown from the seed layer treated with plasma may give the versatile applications for the electronics devices.
Therefore, ZnO nanorods grown from the seed layer treated with plasma can be easily modified with several materials and controlled for the electronic properties, yielding a tunable application for the electronic devices.
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Images of phase contrast microscopy show indeed a reduced density of the cell layers treated with either SLN− and SLN+ compared to untreated or sorafenib-treated cells with no alteration of the cell morphology (Additional file 1: Figure SI11).
Scratch assays were performed on untreated or LT-treated epithelial layers, which were then compared to wounded 3D layers treated with MKK/MAPK inhibitors (Figure 4D, 4E).
The composites have a hybrid laminate structure, consisting of fabric layers treated with different silane coupling agents.
Molecular modeling techniques were applied to predicting binding energies for nanocomposites comprising exfoliated clay layers treated with ammonium salts (usually quaternary) and dispersed in nylon 6,6 resin.
Osteoclasts were seeded on MC3T3-E1 celayersers, treated with PTH (0.1 10 nM) or vehicle control then fixed 4 or 12 h after treatment and stained with phalloidin to visualize actin using confocal microscopy.
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