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I. Emission properties.
Use of a fluorochrome ensures an intense fluorescence signal with well-defined excitation and emission properties.
The emission properties of the exciton are affected by the interaction with the surface-plasmon mode.
The field emission properties of the structures are reported.
Field emission properties of these films are reported here.
The field emission properties of DWCNT films have been studied.
Figure 5 demonstrates that the emission properties are also dependent on the spectral overlap of the QD PL and resonance position of the metamaterial mode.
The added cerous nitrate improves spectral emission properties, while the small amounts of thorium sulfate yield mantles with improved mechanical properties.
To date, an analysis of the PL emission properties for different metamaterial modes and specifically the control of emission via electric and magnetic modes have not been reported.
Figure 3 Field emission properties and FN plot.
The field emission properties of molybdenum nanowall films were investigated.
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