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The proof of principle is demonstrated by sensing refractive index changes of the solution inside the chip.
Especially, changes in the connectivity constants (C_{i}) can result in drastic changes of the solution path.
Changes of the solution nature (ratio Cbipy/CAg) or pH actually led to the formation of reactive species.
The formation of Au Hg alloys caused the nanoparticles aggregation, leading to the color changes of the solution from yellow to purplish red.
This sensing was based on refractive index changes of the solution as the ethanol concentration increased caused changes to the SPR wavelength.
Subtle changes of the solution induced by metal particles, e.g., slight pH change, could make biomolecules highly susceptible to some structural change, which could lead to oxygen desorption from SWCNTs.
Similar(47)
Measurement of the flow behavior was carried out as a parameter to monitor the viscosity changes of the solutions after the enzymatic reaction.
First, for the synthesis of AuNPs and AgNPs, the reaction completion was easily determined by the visible color changes of the solutions.
When reduced to radical anions or oxidized to radical cations, intense NIR absorptions were observed accompanied with color changes of the solutions.
The color change of the solution indicates the formation of silver nanoparticles.
Upon the addition of Cu2+, there was no obvious color change of the solution.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com