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Furthermore, the CuOx@C bead-like nanowire array exhibited a good electrochemical performance and a good stability as supercapacitor electrode.
In these optimal conditions, using a Hg II) preconcentration time of 300 s, the nanosensor array exhibited a linearity range from 0.80 to 9.9 nM with a sensitivity of 1.16 μA nM−1.
The FTiR array exhibited a 3D/1D composite structure with a specific surface area of 81.87 m2/g.
These memory devices in array exhibited a high on/off current ratio (~104±0.85), wide memory window (~43.5 ± 8.3 V), and a high degree of reliability.
Also, the Au-coated silica sphere array exhibited a high average particle height of 259.6 nm, while the Au film on the PET substrate exhibited a low average particle height of 5.78 nm.
When the two I-V curves were compared, the Au-coated silica sphere array exhibited a relatively high slope because the discrete surface of Au somewhat degraded the electric conductivity.
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The optical response of the resulting SU8 nanostructure array exhibits a MaGMR under normally incident light interrogation.
When the nanowires are arranged into a regular array with sufficiently small spacing, the array exhibits a resonant behavior in effective permittivity.
The 10 nm Zn(O,S /TONR array exhibits a significantly enhanced photocurrent density (Jsc) of 5.94 matcm2 at 1.23 eV vs NHE and an incident photon-to-electron conversion efficiency (IPCE) of 49% at 374 nm compared with that of TONR arrays (Jsc of 1.99 matcm2 at 1.23 eV vs NHE and an IPCE of 20% at 380 nm).
These simulations indicate that the SiNW array exhibits a significantly increased absorption (approximately factor 1.4) over a large spectral range.
In general the orthopoxvirus strains represented on the array exhibit a high degree of protein sequence similarity, with ZAIRE and WRAIR sharing 62 identical proteins.
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