Plasmonic Janus particles: A perspective on optical manipulation and biomedical applications
Alemayehu Nana Koya, Anastasiia Sapunova, Nageswar Reddy Sanamreddy, Yanqiu Zou, Qifei Ma, Domna Kotsifak, Huaizhou Jin, Shangzhong Jin, Qing Huo Liu, Paolo Vavassori, and Denis Garoli

TL;DR
This paper reviews recent advances in the optical manipulation of plasmonic Janus particles and explores their potential biomedical applications such as drug delivery, phototherapy, and bio-imaging.
Contribution
It provides a comprehensive overview of the design, manipulation techniques, and biomedical uses of plasmonic Janus particles, highlighting recent progress and future perspectives.
Findings
Enhanced optical and photothermal responses of Janus particles.
Potential for targeted drug delivery and photothermal therapy.
Insights into rational design of asymmetric particles for biomedical use.
Abstract
The compositional asymmetry of Janus micro- and nanoparticles gives unprecedented opportunities to manipulate such composite particles with different stimuli to achieve enhanced optical, magnetic and photothermal responses, which can be exploited for sensing, phototherapy, and nanoscale robotic applications. This perspective overviews recent advances in optical manipulation of plasmonic Janus particles and their implications for biomedical applications. In particular, a brief summary of optical, plasmonic, and magnetic manipulation of Janus particles of various compositions are presented. Moreover, the potentials of plasmonic and magnetic Janus particles for targeted drug delivery, photothermal therapy, hyperthermia, bio-imaging, bio-detection, and neuromodulation are briefly discussed. Finally, a perspective on the rational design and applications of this particular family of…
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