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Hierarchical Nanostructures as Acoustically Manipulatable Multifunctional Agents in Dynamic Fluid Flow

  • Dong Wook Kim
  • , Paul Wrede
  • , Hector Estrada
  • , Erdost Yildiz
  • , Jelena Lazovic
  • , Aarushi Bhargava
  • , Daniel Razansky
  • , Metin Sitti
  • Max Planck Institute for Intelligent Systems
  • University of Zurich
  • ETH Zürich
  • Koc University School of Medicine

Research output: Contribution to journalArticlepeer-review

8 Scopus citations

Abstract

Acoustic waves provide a biocompatible and deep-tissue-penetrating tool suitable for contactless manipulation in in vivo environments. Despite the prevalence of dynamic fluids within the body, previous studies have primarily focused on static fluids, and manipulatable agents in dynamic fluids are limited to gaseous core-shell particles. However, these gas-filled particles face challenges in fast-flow manipulation, complex setups, design versatility, and practical medical imaging, underscoring the need for effective alternatives. In this study, flower-like hierarchical nanostructures (HNS) into microparticles (MPs) are incorporated, and demonstrated that various materials fabricated as HNS-MPs exhibit effective and reproducible acoustic trapping within high-velocity fluid flows. Through simulations, it is validated that the HNS-MPs are drawn to the focal point by acoustic streaming and form a trap through secondary acoustic streaming at the tips of the nanosheets comprising the HNS-MPs. Furthermore, the wide range of materials and modification options for HNS, combined with their high surface area and biocompatibility, enable them to serve as acoustically manipulatable multimodal imaging contrast agents and microrobots. They can perform intravascular multi-trap maneuvering with real-time imaging, purification of wastewater flow, and highly-loaded drug delivery. Given the diverse HNS materials developed to date, this study extends their applications to acoustofluidic and biomedical fields.

Original languageEnglish
Article number2404514
JournalAdvanced Materials
Volume36
Issue number50
DOIs
StatePublished - 12 Dec 2024
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 6 - Clean Water and Sanitation
    SDG 6 Clean Water and Sanitation

Keywords

  • acoustic manipulation
  • dynamic fluid
  • hierarchical nanostructures
  • medical imaging
  • microrobots

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