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The ssLip based on l-α-distearoyl phosphatidylcholine (DSPC ssLip) showed higher fluorescence emission in the retina than that based on egg phosphatidylcholine (EPC ssLip).
DFT studies performed in the gas phase confirmed the energy stabilized structure of the molecules M1 to M5. Structural characteristics of molecule M2 favored higher fluorescence emission with a quantum yield of 0.35 and a solid-state emission of 512 nm.
The higher fluorescence emission intensity (FEI) of Fe3O4 FA hybrid system added more value towards the bio-imaging and targeted drug delivery field.
Since we consistently observed higher fluorescence emission for purified mKO relative to mOrange at equal absorbance, we re-evaluated their quantum yields.
Higher fluorescence emission in the FITC-A and AmCyan-A indicates high emission intensity of BODIPY as a result of its binding to neutral lipids in the cell.
The presence of more or less loose microfibrils, large pores or fissures may substantially increase the surface area and the amount of bound proteins, thus leading to a higher fluorescence emission than the theorized monolayer.
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BODIPYs absorb strongly in blue-green region with high fluorescence emission, properties that convert them in effective fluorophores in the field of biological labeling.
Among several analytical techniques currently employed in the study of art materials, surface-enhanced Raman spectroscopy (SERS) has proven to be one of the most suitable for characterizing organic dyes [2], which are typically very difficult to identify by normal Raman spectroscopy because of their high fluorescence emission.
This observation is again consistent with elevated nitrate leading to over-expression of IsiA complexes with high fluorescence emission.
In contrast, iron stress in the presence of elevated nitrate interferes with the balanced production of antennae and reaction centers, giving rise to two distinct populations of complexes: (1) antennae associated with reaction centers and having high energy transfer efficiencies and (2) antennae energetically decoupled from reaction centers and having high fluorescence emission (Fig. 3).
Again, the fibres present a high fluorescence emission corresponding to a high amount of adsorbed CBD: about 5 layers.
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