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The FE characteristics of the SnO2 nanowire arrays were studied.
The field emission properties of nanostructured arrays were studied systematically.
The magnetic and optical properties of ZnFe2O4 nanowire arrays were studied.
The photon-trapping process in the nanocone arrays were studied by experimentally and theoretically investigating their optical absorption properties.
Sensitivity and detection limit for H2O2 of these different platinized UME arrays were studied by chrono-amperometry at +300 mV vs Ag/AgCl.
The morphologies of the fabricated AAO template and Pd nanowire arrays were studied by SEM. Figure 2 shows SEM images of the fabricated AAO template after the second anodization process.
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The production mechanism of the electron beams emitted from the CNT arrays was studied and explained.
In this work, the single molecule translocation properties through polycarbonate nanopore arrays are studied and discussed.
Then the properties of the selected design and its relation with orthogonal arrays are studied.
In this letter, self-diffusion of water within carbon nanotube arrays is studied, both numerically and theoretically.
Capability of these methods is designing high-gain arrays is studied and specific design examples are provided.
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