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Flexible Metasurfaces for Multifunctional Interfaces. | LitMetric

Flexible Metasurfaces for Multifunctional Interfaces.

ACS Nano

Department of Bioengineering, University of California, Los Angeles, Los Angeles, California 90095, United States.

Published: January 2024

AI Article Synopsis

  • * The rise of flexible electronics is paving the way for more adaptable metasurfaces, which this review examines, including their history, classifications, and innovative design techniques.
  • * The article highlights four significant applications (like imaging and biosensing) and discusses three emerging trends (mechanically reconfigurable, digitally controlled, and conformal metasurfaces) while addressing ongoing challenges and opportunities in the field.

Article Abstract

Optical metasurfaces, capable of manipulating the properties of light with a thickness at the subwavelength scale, have been the subject of extensive investigation in recent decades. This research has been mainly driven by their potential to overcome the limitations of traditional, bulky optical devices. However, most existing optical metasurfaces are confined to planar and rigid designs, functions, and technologies, which greatly impede their evolution toward practical applications that often involve complex surfaces. The disconnect between two-dimensional (2D) planar structures and three-dimensional (3D) curved surfaces is becoming increasingly pronounced. In the past two decades, the emergence of flexible electronics has ushered in an emerging era for metasurfaces. This review delves into this cutting-edge field, with a focus on both flexible and conformal design and fabrication techniques. Initially, we reflect on the milestones and trajectories in modern research of optical metasurfaces, complemented by a brief overview of their theoretical underpinnings and primary classifications. We then showcase four advanced applications of optical metasurfaces, emphasizing their promising prospects and relevance in areas such as imaging, biosensing, cloaking, and multifunctionality. Subsequently, we explore three key trends in optical metasurfaces, including mechanically reconfigurable metasurfaces, digitally controlled metasurfaces, and conformal metasurfaces. Finally, we summarize our insights on the ongoing challenges and opportunities in this field.

Download full-text PDF

Source
http://dx.doi.org/10.1021/acsnano.3c09310DOI Listing

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