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ZnO nanostructures exhibited band edge luminescence at 383 nm.
UV-visible spectroscopy showed that materials in the nanostructured state exhibit band gap widening with respect to their micron state while for the doped compounds exhibited band gap narrowing both in the nano and micron states with respect to the pure ZnO materials.
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The optical studies of the prepared samples exhibited band-band transition related strong UV absorption and strong UV emission alone with no visible range emission that supported the successful formation of graphene sheets with insignificant surface functional groups.
The electronic spectra of PAniTNCs exhibited bands at ~272 and ~368 nm which are attributed to π π* transitions in the benzenoid structure [27].
The solubilized matrices exhibited bands that corresponded to collagen, as expected, in addition to the presence of lower molecular weight bands (Figure 2c).
Many non-polar fractions exhibited bands having similar mobility (Rf 0.22 and 0.42).
The RAPD profiles obtained exhibited bands between 1250 and 5000 bp in length.
Only eight carcinomas exhibited bands for the active form of MMP-9.
Under nonreducing conditions, protein staining of the three conjugated products (1, 2, and 3) exhibited bands similar to the unmodified panitumumab.
As-grown nanowires exhibit band edge emission at ~0.99 eV with a shoulder peak at ~0.85 eV, identified to arise from band tail states.
The considered structures exhibit band gaps in the transmission spectrum and these are localized modes inside the band gap, coming from defect layers introduced in periodic systems.
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