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a UV-Vis spectrum evolution of MO decomposition.
b UV-Vis spectrum evolution of MO decomposition with the Ag/CMK-8-Nafion membrane.
Figure 4a presents the UV-Vis spectrum evolution of MO decomposition under UV irradiation at 254 nm.
Individual terms in the series may be treated separately as local spectrum evolution equations, valid at all points along the propagation path.
At the pump wavelength of ∼1750 nm which is in the deep anomalous dispersion region, SC spectrum evolution is mainly due to multiple solitons and dispersive waves (DWs), and three pairs of multiple optical solitons and DWs are observed.
This experiment is intended to provide a direct measurement of the two-dimensional bubble-front shape and spectrum evolution in time, along with the power-law coefficient for bubble-front growth (θb).
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The systematic observation of the Harderian gland fluorescence spectrum evolutions in comparison with its tissue degradation factor demonstrated high occurrence of the result repetition for different animals even at very low light fluencies.
Fig. 3 Raman spectra evolution of MAPbI3 MWs after humidity exposure.
The PL spectra evolution with the temperature is shown in Fig. 3a.
Analysis of the Harderian gland fluorescence spectra evolution under light irradiation in comparison with that of protoporphyrin IX in solutions demonstrated that it is protoporphyrin IX responsible for gland fluorescence and photodynamic degradation.
Fig. 3 UV-Vis spectra evolution of MO decomposition a under UV irradiation at 254 nm only, b with the CMK-8-Nafion membrane in darkness, c CMK-8-Nafion membrane under UV irradiation at 254 nm, and d recycling examination.
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