Articles producció científicaQuímica Física i Inorgànica

Bioinspired photocatalytic systems towards compartmentalized artificial photosynthesis

  • Dades identificatives

    Identificador:  imarina:9332593
    Autors:  Velasco-Garcia, L; Casadevall, C
    Resum:
    Artificial photosynthesis aims to produce fuels and chemicals from simple building blocks (i.e. water and carbon dioxide) using sunlight as energy source. Achieving effective photocatalytic systems necessitates a comprehensive understanding of the underlying mechanisms and factors that control the reactivity. This review underscores the growing interest in utilizing bioinspired artificial vesicles to develop compartmentalized photocatalytic systems. Herein, we summarize different scaffolds employed to develop artificial vesicles, and discuss recent examples where such systems are used to study pivotal processes of artificial photosynthesis, including light harvesting, charge transfer, and fuel production. These systems offer valuable lessons regarding the appropriate choice of membrane scaffolds, reaction partners and spatial arrangement to enhance photocatalytic activity, selectivity and efficiency. These studies highlight the pivotal role of the membrane to increase the stability of the immobilized reaction partners, generate a suitable local environment, and force proximity between electron donor and acceptor molecules (or catalysts and photosensitizers) to increase electron transfer rates. Overall, these findings pave the way for further development of bioinspired photocatalytic systems for compartmentalized artificial photosynthesis.
  • Altres:

    Enllaç font original: https://www.nature.com/articles/s42004-023-01069-z
    Referència de l'ítem segons les normes APA: Velasco-Garcia, L; Casadevall, C (2023). Bioinspired photocatalytic systems towards compartmentalized artificial photosynthesis. Communications Chemistry, 6(1), 263-. DOI: 10.1038/s42004-023-01069-z
    Referència a l'article segons font original: Communications Chemistry. 6 (1): 263-
    DOI de l'article: 10.1038/s42004-023-01069-z
    Any de publicació de la revista: 2023
    Entitat: Universitat Rovira i Virgili
    Versió de l'article dipositat: info:eu-repo/semantics/publishedVersion
    Data d'alta del registre: 2024-01-27
    Autor/s de la URV: Casadevall Serrano, Carla
    Departament: Química Física i Inorgànica
    URL Document de llicència: https://repositori.urv.cat/ca/proteccio-de-dades/
    Tipus de publicació: Journal Publications
    Autor segons l'article: Velasco-Garcia, L; Casadevall, C
    Accès a la llicència d'ús: https://creativecommons.org/licenses/by/3.0/es/
    Àrees temàtiques: Materials chemistry, General chemistry, Environmental chemistry, Ciencias sociales, Chemistry, multidisciplinary, Chemistry (miscellaneous), Chemistry (all), Biochemistry
    Adreça de correu electrònic de l'autor: carla.casadevall@urv.cat
  • Paraules clau:

    Photoinduced electron-transport
    water oxidation
    regenerative medicine
    polyion complex vesicles
    photodissociative ruthenium complex
    light-driven
    drug-delivery
    covalent organic frameworks
    cell/stem cell therapy
    annihilation up-conversion
    Biochemistry
    Chemistry (Miscellaneous)
    Chemistry
    Multidisciplinary
    Environmental Chemistry
    Materials Chemistry
    General chemistry
    Ciencias sociales
    Chemistry (all)
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