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These nanocrystals show intense emission features, and the maximum luminescent intensity of the samples can be attained when the starting pH value is ca. 9. Furthermore, the proposed mechanism for the pH-dependent optical properties of the Fe CdS nanocrystals is also presented.
The top left inset shows the integrated intensity of the samples.
The PL intensity of the samples is normalized to their values at 20 K.
Figure 4 Excitation power dependence of the integrated PL intensity of the samples capped at 580, 350, and 200°C.
The fluorescence intensity of the samples indicates that the EGFP remains intact after conjugation to the magnetomicelle surface.
As the oxygen pressure increased, the combustion intensity of the samples steadily increased, and the ignition delay time and combustion time both decreased.
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When the doping concentration of Eu2+ ions is 0.01, the luminescence intensity of the sample reaches the maximum value.
Furthermore, we analyzed the measured fluorescent color intensity of the sample stream and from that, calculated the sample flow height.
The EL intensity of the sample annealed in oxygen is higher compared to that of the sample annealed in air.
Figure 3c and d show the current voltage response and corresponding fluorescence intensity of the sample reservoir.
The DOX concentration was determined measuring fluorescence intensity of the sample with the fluorescence spectrometer at 495 and 590 nm of excitation and emission wavelengths, respectively.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com