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1.
Molecules ; 27(8)2022 Apr 09.
Article in English | MEDLINE | ID: mdl-35458633

ABSTRACT

New fluorescent systems for photocatalysis, sensors, labeling, etc., are in great demand. Amphiphilic ones are of special interest since they can form functional colloidal systems that can be used in aqueous solutions. A new macrocycle platform for click chemistry and its adduct with o-propargylfluoresceine was synthesized and characterized using modern physical techniques. Nanosized solid lipid nanoparticles (SLNs) from the calixarene-fluoresceine adduct were synthesized through the solvent injection technique and well-characterized in the solution and in solid state using light-scattering and microscopy methods. The maximum fluorescence intensity of the SLNs was found to be in the pH range from 7 to 10. The Förster resonance energy transfer (FRET) efficiency from SLNs to rhodamine 6g was found to be 97.8%. Finally, pure SLNs and the FRET system SLNs-Rh6G were tested in model photocatalytic ipso oxidative hydroxylation of phenylboronic acid under blue LED light. The SLNs-Rh6G system was found to be the best, giving an almost qualitative phenol yield, which was shown by HPLC-UV analysis.


Subject(s)
Lipids , Nanoparticles , Calixarenes , Drug Carriers/chemistry , Fluorescein , Lipids/chemistry , Liposomes , Nanoparticles/chemistry , Particle Size , Phenols
2.
Chem Commun (Camb) ; 51(68): 13317-20, 2015 Sep 04.
Article in English | MEDLINE | ID: mdl-26208171

ABSTRACT

In this communication we report the synthesis of Pd nanoparticle clusters achieved via the assembly of Pd nanoparticles on the surface of a spherical polymer network. The network exhibits flexibility and adapts to the cluster formation. The nanoclusters display high catalytic activity toward p-nitrophenol reduction and the Suzuki-Miyaura coupling reaction.


Subject(s)
Calixarenes/chemistry , Catalysis , Nanoparticles/chemistry , Polystyrenes/chemistry , Viologens/chemistry , Metal Nanoparticles , Palladium
3.
Chemistry ; 20(43): 14018-25, 2014 Oct 20.
Article in English | MEDLINE | ID: mdl-25208760

ABSTRACT

A novel class of self-assembling nanoparticles is formed with viologen-resorcin[4]arene cavitands; the association model is strongly controlled by their hydrophobicity. Interestingly, the cavitand assemblies are designed through click chemistry to form self-assembled noncovalently connected aggregates through counterion displacement. The iodide and benzoate ions are utilized as strongly polarizable counterions to induce cavitand self-assembly. The counterion-mediated decrease in hydrophilicity of the viologen-resorcin[4]arenes is the underlying trigger to induce particle formation. These particles can be used as nanocontainers and find their applications in delivery systems.

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