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The surface-enhanced Raman scattering (SERS) enhancement factor for each nanoparticle size produced (17, 26, 50, and 65 nm) was then assessed using three different analytes, rhodamine 6G (R6G), malachite green oxalate (MGO) and thiophenol (TP).
The maximal enhancement factor for a single LH2 complex was more than 500 times.
The obtained enhancement factor for a sample volume of 30 mL was 35 fold.
Dissolved molecular oxygen effect on the enhancement factor for each sample was examined experimentally.
A simple approximate method is given to calculate the enhancement factor for the present type of reaction.
The enhancement factor for the characteristic concentration (Co) was found to be 21 when compared with the regular system without trap, by using peak height values.
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Explicit expressions for the enhancement factors for this system have not been reported to date.
Finally, an approximate technique to determine infinite enhancement factors for reversible consecutive reactions has been given.
The average enhancement factors for individual Ag mesostructures are estimated to be about 106.
A film model for the liquid phase is used to calculate the enhancement factors for individual gases.
A new method of calculating approximate enhancement factors for mass transfer with reversible reactions when diffusivities are unequal is developed.
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