2020
DOI: 10.1021/acs.inorgchem.9b03699
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Fashioning Prussian Blue Nanoparticles by Adsorption of Luminophores: Synthesis, Properties, and in Vitro Imaging

Abstract: We report the post-synthetic functionalization of Prussian blue (PB) nanoparticles by two different luminophores (2-aminoanthracene and rhodamine B). We show that the photoluminescence properties of the fluorophores are modified by a confinement effect upon adsorption and demonstrate that such multifunctional nanosized systems could be used for in vitro imaging.

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Cited by 12 publications
(14 citation statements)
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“…In the case of PBA, LeBail refinement applied to the XRD pattern (Supplementary Material: Section 4, Figure S6) provides a solid argument that the space group is identified as Fm3m type having a unit cell parameter a = 10.2091(3) Å in good accordance with the results reported for similar samples [37][38][39].…”
Section: Resultssupporting
confidence: 80%
“…In the case of PBA, LeBail refinement applied to the XRD pattern (Supplementary Material: Section 4, Figure S6) provides a solid argument that the space group is identified as Fm3m type having a unit cell parameter a = 10.2091(3) Å in good accordance with the results reported for similar samples [37][38][39].…”
Section: Resultssupporting
confidence: 80%
“…The adsorption by PB/PBA has other applications than those intended to remove molecules or cations from an environment. Larionova's group rendered magnetic and nonmagnetic PBA nanoparticles luminescent by a synthetic functionalization within the internal porosity of the cyano-bridged framework using 2-aminoanthracene (AA) or rhodamine B (RhB) fluorophore to yield a luminescent system (bifunctional when the nanoparticles were magnetic) [3,83]. Figure 4 shows the two luminophores, which differ in their size, although both are planar.…”
Section: Adsorption Of Moleculesmentioning
confidence: 99%
“…2021, 22, 780 2 of 14 first coordination network materials in which transition metal ions are assembled through cyano-bridges, generating a 3D cubic structure. PB is a mixed-valence system exhibiting the general formula A 1−x Fe III [Fe II (CN) 6 ] 1−x / 4 x/4 , in which A is a ion (K + , Na + or NH 4 + ) and denotes the hexacyanoferrate vacancies [3]. PBA are coordination polymers with the general formula A x M y [M'(CN 6 )] z , where A is an alkaline metal cation and M and M' cations in oxidation state +2 or +3 [4].…”
Section: Introductionmentioning
confidence: 99%
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