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Advanced materials for micro/nanorobotics

  • Jeonghyo Kim
  • , Paula Mayorga-Burrezo
  • , Su Jin Song
  • , Carmen C. Mayorga-Martinez
  • , Mariana Medina-Sánchez
  • , Salvador Pané
  • , Martin Pumera
  • VŠB – Technical University of Ostrava
  • Brno University of Technology
  • CIC nanoGUNE
  • Basque Foundation for Science
  • Leibniz Institute for Solid State and Materials Research Dresden
  • Technische Universität Dresden
  • Swiss Federal Institute of Technology Zurich
  • Yonsei University
  • China Medical University Taichung

Producción científica: Contribución a una revistaArtículo de revisiónrevisión exhaustiva

84 Citas (Scopus)

Resumen

Autonomous micro/nanorobots capable of performing programmed missions are at the forefront of next-generation micromachinery. These small robotic systems are predominantly constructed using functional components sourced from micro- and nanoscale materials; therefore, combining them with various advanced materials represents a pivotal direction toward achieving a higher level of intelligence and multifunctionality. This review provides a comprehensive overview of advanced materials for innovative micro/nanorobotics, focusing on the five families of materials that have witnessed the most rapid advancements over the last decade: two-dimensional materials, metal-organic frameworks, semiconductors, polymers, and biological cells. Their unique physicochemical, mechanical, optical, and biological properties have been integrated into micro/nanorobots to achieve greater maneuverability, programmability, intelligence, and multifunctionality in collective behaviors. The design and fabrication methods for hybrid robotic systems are discussed based on the material categories. In addition, their promising potential for powering motion and/or (multi-)functionality is described and the fundamental principles underlying them are explained. Finally, their extensive use in a variety of applications, including environmental remediation, (bio)sensing, therapeutics, etc., and remaining challenges and perspectives for future research are discussed.

Idioma originalInglés
Páginas (desde-hasta)9190-9253
Número de páginas64
PublicaciónChemical Society Reviews
Volumen53
N.º18
DOI
EstadoPublicada - 14 ago. 2024
Publicado de forma externa

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