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Hybrid phosphorus-viologen dendrimers as new soft nanoparticles: design and properties

期刊

ORGANIC CHEMISTRY FRONTIERS
卷 8, 期 16, 页码 4607-4622

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1qo00511a

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资金

  1. Centre National de la Recherche Scientifique (CNRS, France) [CA 17140]
  2. COST program [CA 17140]
  3. Kochanowski University of Kielce, Poland
  4. University of Lodz (Poland)
  5. Institute of Biophysics and Cell engineering, Minsk, NASB (Belarus)
  6. Euromed Research Center, Fes, (Morocco)
  7. FCT-Fundacao para a Ciencia e a Tecnologia (CQM, Portuguese Government funds) [PEst-OE/QUI/UI0674/2013]
  8. ARDITI through the Centro de Quimica da Madeira - CQM+ (Madeira ) [M1420-01-0145-FEDER-000005, 14-20]

向作者/读者索取更多资源

A variety of dendritic structures have been prepared, with a focus on phosphorus dendrimers and viologen dendrimers, which have shown promise in various fields. Combining phosphorus and viologen structures has led to the development of mixed hybrid phosphorus-viologen dendrimers, showcasing specific properties and applications in constructing organic-inorganic hybrid materials. Preliminary results on the biological properties of these nano-objects have been presented.
Various dendritic structures have been prepared during the last few decades and their properties have been emphasized in a number of reviews. Among these macromolecular structures, those incorporating phosphorus units - phosphorus dendrimers - or viologen linkages - viologen dendrimers - stand as the most promising in different fields spanning from chemistry, materials science to biology and nanomedicine. The association of the two complementary phosphorus and viologen structures resulted in a nascent family of structures referred to as mixed hybrid phosphorus-viologen dendrimers. In light of their specific properties, it is of interest to illustrate the conceptual preparation of not only a variety of sophisticated hybrid viologen-phosphorus dendrimers including classical dendrimers, but also other kinds of mixed macromolecules such as macromolecular asterisks, onion peel structures and covalent polydendrimer frameworks. Some preliminary results concerning the biological properties of these nano-objects as well as their use for the construction of organic-inorganic hybrid materials are presented.

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