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The conversion efficiency of the FF-DSSC based on a TiCl4-treated TiO2 nanorod array (hierarchical structure I) exhibits about 4 times higher than that based on a HCl-treated TiO2 nanorod array, and further rises to 4.4% when the TiCl4-treated TiO2 nanorod array is treated in a mixed solution of (NH4 2TiF6 and H3BO3 three times (hierarchical structure II).
A linear array is treated in more detail and the analysis provides a specific design tradeoff.
In this paper, the crossbar array is treated as a communication channel with added distortion to represent the sneak current.
The coordinate system of the first tag (ID = 0) in the AprilTag array is treated as the global coordinate system.
The array is treated with transfection reagent and cells are grown over the top of the array until confluent.
For transcription profiling data, every probeset on the array is treated as an independent assay for the response of its corresponding transcript and its expression values at the experimental doses constitute the assay data.
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ZnO NR array was treated by annealing at 200°C, under injected forward current.
In addition, hybrid Ag-ZnO nanorod array was treated by gram-negative and gram-positive bacteria in this paper to evaluate the antimicrobial efficiency of the hybrid nanostructures.
Array was treated as a random effect.
The array was treated with Cy5-labeled goat anti-mouse IgG, and the fluorescence image shows that the antibodies were localized only on electrodes with Ppy.
To prevent non-specific binding, the array was treated with PBSC for 5 min, washed three times with PBS containing 0.1% Tween 20 (PBST), three times with PBS, and three times with 0.1 M dibasic sodium sulfate prior to adding pyrrole for electrodeposition.
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