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A band gap of 4.17 eV for Li1.98Sb0.02SiO3 and 4.13 eV for Li1.975Sb0.025SiO3 is calculated from the absorption spectroscopy.
The absorption spectroscopy system is capable of absorbing solution in the region (175 3300 nm) wavelength range with a resolution of 1 nm.
The optical bandgap value of the synthesized ZnO nanocrystals is found to be 3.50 eV from the absorption spectroscopy, while the photoluminescence spectrum reveals a strong emission at 365 nm along with a broad green-yellow emission.
The absorption spectroscopy of these complexes show remarkable spectral changes due to characteristic lanthanide transitions, which support the use of TAME5OX as a sensitive optical pH based sensor to detect Ln3+ metal ions in biological systems.
The absorption spectroscopy of these complexes shows marked spectral variations due to characteristic lanthanide transitions, which support the use of TMOM5OX as a sensitive optical pH based sensor to detect Ln3+ metal ions in biological systems.
The absorption spectroscopy of these complexes show marked spectral variations due to characteristic lanthanide transitions, which support the use of TMOM5OX as a sensitive optical pH based sensor to detect Ln III) metal ions in biological systems.
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The trends observed for the PPAs from the electronic absorption spectroscopy are also observed from the LUMO HOMO energies of the DFT calculations.
The amount of release of curcuminoids was determined at 15 min intervals, followed by 30 min intervals of monitoring the variation of absorbance in the UV Vis absorption spectroscopy, with the peak at 427 nm (λmax of curcuminoids).
The collected samples were analyzed for the heavy metals concentrations (Cd, Cr, Cu, Ni, Mn, Pb, Fe, Zn, and Ag) by the atomic absorption spectroscopy in the laboratories of the Environmental Research Center, University of Technology, Baghdad, Iraq.
However, the precipitate and the enamel had similar composite and structure; even the atomic absorption spectroscopy could not show the difference.
The optical absorption spectroscopy study reveals the exclusive formation of the pernigraniline base (PB) form of POT.
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