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A Novel Approach to the Facile Growth and Organization of Photothermal Prussian Blue Nanocrystals on Different Surfaces. | LitMetric

AI Article Synopsis

  • A new "one-pot" method has been developed to control the growth and arrangement of Prussian blue nanostructures on three types of surfaces, including pure gold and SiO-supported lipid bilayers.
  • The size and shape of these nanostructures can be finely tuned by adjusting parameters like precursor concentration and the type of surface functional groups or lipids used.
  • Notably, the Prussian blue nanoparticles on gold surfaces demonstrate effective photothermal properties, allowing for a rapid temperature rise of nearly 90 °C when exposed to laser power, achieving a conversion efficiency of about 50%.

Article Abstract

We report here a novel "one-pot" approach for the controlled growth and organization of Prussian blue nanostructures on three different surfaces: pure Au, cysteamine-functionalized Au, and SiO-supported lipid bilayers with different natures of lipids. We demonstrate that fine control over the size, morphology, and the degree and homogeneity of the surface coverage by Prussian Blue (PB) nanostructures may be achieved by manipulating different parameters, which are the precursor concentration, the nature of the functional groups or the nature of lipids on the surfaces. This allows the growth of isolated PB nanopyramids and nanocubes or the design of thin dense films over centimeter square surfaces. The formation of unusual Prussian blue nanopyramids is discussed. Finally, we demonstrate, by using experimental techniques and theoretical modeling, that PB nanoparticles deposited on the gold surface exhibit strong photothermal properties, permitting a rapid temperature increase up to 90 °C with a conversion of the laser power of almost 50% for power source heat.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8308188PMC
http://dx.doi.org/10.3390/nano11071749DOI Listing

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