Ortho-substituted azobenzene: shedding light on new benefits

Author:

Del Pezzo Rita12,Bandeira Nuno A.G.345,Trojanowska Anna16,Fernandez Prieto Susana2,Underiner Todd7,Giamberini Marta16,Tylkowski Bartosz167

Affiliation:

1. Department of Chemical Engineering , Rovira i Virgili University , Av. Països Catalans 26 , Tarragona 43007 , Spain

2. The Procter and Gamble Company , Temselaan 100 , Strombeek-Bever 1853 , Belgium

3. Biosystems and Integrative Sciences Institute, Faculty of Sciences , University of Lisbon , Campo Grande-C8 , Lisboa 1749-016 , Portugal

4. Centro de Química Estrutural – Instituto Superior Técnico , Universidade de Lisboa , Av. Rovisco Pais , Lisboa 1049-001 , Portugal

5. Institute of Chemical Research of Catalonia (ICIQ) – Avda. Països Catalans , Tarragona 16-43007 , Spain

6. Centre Tecnològic de la Química de Catalunya , Carrer Marcelli Domingo s/n , Tarragona 43007 , Spain

7. The Procter and Gamble Company , 6210 Center Hill Avenue , Cincinnati, OH 45224 , USA

Abstract

Abstract Novel functional polymeric microcapsules, based on modified azobenzene moieties, are exhaustively investigated, both from a theoretical and experimental points of view. Theoretical calculations and several measurements demonstrate that visible light can act as a trigger for release of encapsulated material, as a consequence of trans-cis isomerization which modifies microcapsule surface topography and can induce a “squeezing” release mechanism. Interfacial polymerization of an oil-in-water emulsion is performed and leads to core-shell microcapsules which are characterized by means of atomic force microscopy (AFM), optical microscopy (OM), scanning electron microscopy (SEM) and light scattering. These analyses put into evidence that microcapsules’ size and surface morphology are strongly affected by irradiation under visible light: moreover, these changes can be reverted by sample exposure to temperatures around 50°C. This last evidence is also confirmed by NMR kinetic analyses on modified azobenzene moiety. Finally, it is shown that these smart microcapsules can be successfully used to get a controlled release of actives such as fragrancies, as a consequence of visible light irradiation, as confirmed by an olfactive panel.

Publisher

Walter de Gruyter GmbH

Subject

General Chemical Engineering,General Chemistry

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