Tesis doctoralsDepartament de Química

Cu(0) wire-mediated SET-LRP in biphasic systems and development of stimuli cleavable polymers

  • Datos identificativos

    Identificador:  TDX:3309
    Autores:  Moreno Guerra, Adrian
    Resumen:
    Cu(0)wire-catalyzed SET-LRP has been postulated as one of the most versatile LRP techniques due to its operational simplicity which enables the construction of well-defined polymers and more complex architectures. In particular, the development of polymeric materials with suitable applications for medicine (e.g. polymeric nanoparticles able to encapsulate and release drugs) is a field of growing interest since they improve the poor solubility of hydrophobic drugs in aqueous media. However, their selective delivery under the application of different biological relevant stimuli still remains challenging. The main objective of this thesis is to investigate the Cu(0)wire-catalyzed SET-LRP in “programmed” biphasic systems and to explore the potential and limitations of this methodology with the ultimate goal of obtaining well-defined polymers with complex architectures and maximum end-group fidelity. Eventually, the application of biphasic SET-LRP and other polymerization techniques has been used for the synthesis of stimuli cleavage polymers and their potential application as drug delivery systems has been studied.
  • Otros:

    Editor: Universitat Rovira i Virgili
    Fecha: 2019-12-17, 2021-01-26T11:17:56Z, 2021-01-26T11:17:56Z
    Identificador: http://hdl.handle.net/10803/670490
    Departamento/Instituto: Departament de Química Analítica i Química Orgànica, Universitat Rovira i Virgili.
    Idioma: deu
    Autor: Moreno Guerra, Adrian
    Director: Lligadas Puig, Gerard, Galià Clua, Marina Teresa
    Fuente: TDX (Tesis Doctorals en Xarxa)
    Formato: application/pdf, application/pdf, application/pdf, 332 p.
  • Palabras clave:

    Copper (0)
    stimuli cleavable polymers
    Living radical polymerization
    Cobre (0)
    polímeros sensibles a estimulo
    polimerización radicalaria
    Coure (0)
    polímers sensibles a estimuls
    polimerització radicalaria
    Ciéncias
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