Publications by authors named "F Mendicuti"

We introduce an innovative β-cyclodextrin (βCD)-prototype for delivering nucleic acids: "geometrically frustrated amphiphiles (GFAs)." GFAs are designed with cationic centers evenly distributed across the primary O6 and secondary O2 positions of the βCD scaffold, while hydrophobic tails are anchored at the seven O3 positions. Such distribution of functional elements differs from Janus-type architectures and enlarges the capacity for accessing strictly monodisperse variants.

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  • Mechanochemistry and photocatalysis are innovative approaches for breaking down polycyclic aromatic hydrocarbons (PAHs) like pyrene in soils.
  • The study investigates how applying pressure to pyrene and sepiolite enhances its degradation through a combined mechanism, facilitating a crystal phase transformation that accelerates photodegradation.
  • The findings suggest that sepiolite is more effective than traditional photocatalysts like TiO when it comes to degrading pyrene, providing insights into the processes of PAH degradation in soil environments.
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  • β-cyclodextrin (βCyD) derivatives with aromatic appendages can self-assemble and respond to stimuli, making them useful for applications like nonviral gene delivery systems.
  • A particular azobenzene moiety can be attached to βCyD to create derivatives that form light-regulated dimers, allowing for controlled organization through photoswitching.
  • The study utilizes various techniques to analyze these interactions and the stability of the supramolecular structures, highlighting their potential for advanced applications in materials science and biotechnology.
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A robust strategy is reported to build perfectly monodisperse star polycations combining a trehalose-based cyclooligosaccharide (cyclotrehalan, CT) central core onto which oligoethyleneimine radial arms are installed. The architectural perfection of the compounds is demonstrated by a variety of physicochemical techniques, including NMR, MS, DLS, TEM, and GPC. Key to the strategy is the possibility of customizing the cavity size of the macrocyclic platform to enable/prevent the inclusion of adamantane motifs.

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Previously unknown 1,10a-dihydro-1-aza-10a-boraphenanthrene and 6a,7-dihydro-7-aza-6a-boratetraphene have been efficiently synthesized. Bromination of these BN-PAHs proceeds with complete regioselectivity, resulting in the formation of different substituted derivatives via cross-coupling reactions. These compounds exhibit rather high fluorescence quantum yields (up to ϕ = 0.

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