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Work parameters of the sensor arrays were characterized.
In order to get strong signals, the high-density VFS PZT NC arrays were characterized.
The nanowire arrays were characterized by XRD, N2adsorption, TEM, and SEM.
The field emission properties of the coated and uncoated ZnO nanorod arrays were characterized.
The optical properties of the nanodiamond-protein complex arrays were characterized by a high throughput confocal microscope.
The microstructure and thickness of the NT arrays were characterized by field-emission scanning electron microscopy (FE-SEM).
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The electrochromic properties of Co3O4 nanowall arrays are characterized via optical-electrochemical measurements.
Morphology and structure of the nanorod arrays are characterized by field emission scanning electron microscopy and X-ray diffraction.
The crystal phase of ZnO nanowire arrays was characterized by X-ray diffraction (XRD, D/max 2550 V, Cu Kα radiation).
The electrical performance of the fabricated NW arrays was characterized with a standard electrical probe station and Agilent 4155C semiconductor analyzer (Santa Clara, CA, USA).
The morphology of the oriented Bi-Ni nanowire and nanocable arrays was characterized using an S-4800 field-emission scanning electron microscope [FE-SEM] (Hitachi, Chiyoda-ku, Tokyo, Japan).
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