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Smartphone‐Based Colorimetric Method to Quantify Iron Concentration and to Determine the Nanoparticle Size from Suspensions of Magnetic Nanoparticles
Author(s) -
FernándezAfonso Yilian,
Salas Gorka,
FernándezBarahona Irene,
Herranz Fernando,
Grüttner Cordula,
Martínez de la Fuente Jesús,
Puerto Morales María,
Gutiérrez Lucía
Publication year - 2020
Publication title -
particle and particle systems characterization
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.877
H-Index - 56
eISSN - 1521-4117
pISSN - 0934-0866
DOI - 10.1002/ppsc.202000032
Subject(s) - nanoparticle , suspension (topology) , particle size , magnetic nanoparticles , iron oxide , colloid , iron oxide nanoparticles , materials science , nanotechnology , range (aeronautics) , particle (ecology) , rgb color model , chemical engineering , computer science , composite material , metallurgy , mathematics , operating system , oceanography , homotopy , geology , pure mathematics , engineering
Advanced uses of smartphones are changing lifestyles, and may have a great impact in materials science in the near future. In this work, the use of these devices to develop fast, simple, and cheap methods to characterize magnetic nanoparticle suspensions is tested. A series of dilutions of a wide library of magnetic nanoparticles, composed of iron oxide materials in the range between 3 and 43 nm, with two different shapes and four different coatings is prepared. The colloid color is analyzed using the RGB (red, green, blue) color model. Ratios of these parameters are correlated with the suspension iron concentration and with the nanoparticles average size. A linear relationship between the color (in particular the G/R ratio) and both the colloid iron content and the particles size is found. The link between these parameters allows the development of two new methods to determine either the concentration or the particle size of magnetic nanoparticle suspensions just by acquiring images from suspensions of iron oxide magnetic nanoparticles with a smartphone.