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CNT arrays with four different heights in the range of 4 16 μm have been fabricated.
In the present paper, TiO2 nanotube arrays with four different diameters ranging from 60 to 350 nm on the same piece of substrate were prepared by repeated anodization.
In this work, mesoporous titania is prepared by templating latex sphere arrays with four different sphere diameters at the micrometric scale (ϕ > 1 μm).
With this approach, PC arrays with four distinct areas are realized on the same Si substrate with tuned reflectance spectrum covering the whole visible spectral regime.
Figure 3 shows the spectral reflectivity of the as-grown SiNW arrays with four different lengths (1, 2.5, 5, and 10 μm) and the polished Si wafers in the wavelength range of 350 to 1,100 nm.
Thus, each individual is hybridized to two arrays with four replicates per array for a total of eight technical replicates per individual.
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Two 4 × 4 dot arrays with three information densities were designed for the two presentation methods to test twenty-two participants.
Within subsequent growth stages multi-scale ordering of the nanotube arrays with two discrete geometries can be observed.
We used linear arrays with eight antennas at the AP and a single antenna at each user.
Figure 4b shows the measured absorption spectra of the planar structure and hexagonal arrays with three periodicities.
For the Ti 50Zr and Ti 80Zr, self-organization is achieved on two size scales, that is, nanotube arrays with two distinct diameters are observed.
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