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The behavior of complexes containing LMCT state is quite different, because several transition rates and their interactions have significant effects on the quantum yield with similar absolute magnitudes.
We have fabricated atomic-scale metal wires with quantized conductance in electrolytes and studied double layer charging, anionic adsorption and surface stress effects on the quantum transport in the wires.
Such modifications bring three features: (a) the tuning of the absorbance with concomitant effects on the quantum yield, (b) the possibility to anchor the group on a solid support or on a linker (this will not be discussed here, as a book chapter reviewed the field recently), and (c) the possibility to modulate the solubility properties of the group.
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Raman spectroscopy has been employed for almost 20 years to study carbon nanotubes, but the effect of the quantum confinement on the double-resonance (DR) Raman process in a single-chirality carbon nanotube was not yet understood.
Effect of the quantum confinement on Fano resonance is not studied yet and needs further studies to elucidate the behavior of Fano interaction as a function of Si NSs size and laser power density.
They have a significant effect on the quantum capacitance, especially at low voltages.
They have an additive effect on the quantum capacitance, especially at higher voltages and negative bias.
For most models, the decaying rate of the lanthanide ion emitting state is the main (negative) effect on the quantum yield, suggesting that its optimization should improve the quantum yield of most lanthanide compounds.
In another macrophyte study with atrazine[13], it was shown that the negative effect on the quantum yield of PSII caused by atrazine decreases with time.
When a local magnetic flux is applied, its effect on the quantum interference can be well defined by writing W LR =W e iϕ.
Whilst the above results suggest that LB film formation has little to no effect on the quantum yield or emission properties of the Ln III) systems, Zaniquelli showed otherwise with investigations using in situ formed of multi-layered Tb III) films of 13 and 14 (Fig. 6) [17].
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