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February 16, 2026Micro & Nano Letters1 citationsOpen Access

Fabrication of Surface Relief Micro‐Gratings in Azobenzene Films and Their Conversion to Gold Microwires

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YBYazan BdourPRP. RochonRSRibal Georges Sabat

Key Points

  • The research aims to develop a method for fabricating surface relief micro-gratings and converting them into gold microwires.
  • Utilized a maskless method to create large-area surface relief micro-gratings on azobenzene films.
  • Employed a bi-facial pyramidal prism to split a 532-nm laser beam for inducing molecular migration.
  • Applied selective chemical dissolution and gold sputtering with lift-off to create microwires from gratings.
  • Achieved a pitch of ∼64.5 µm and average modulation depth of ∼100 nm in the micro-gratings.
  • Surface periodicity and uniformity were confirmed through profilometry and scanning electron microscopy analysis.
  • Demonstrated scalable fabrication for creating customizable photonic and electromagnetic components.

Abstract

ABSTRACT A simple maskless method was used to produce large‐area surface relief micro‐gratings on azobenzene molecular glass films. A custom‐built bi‐facial pyramidal prism was used to split a 532‐nm laser beam into two, generating a sinusoidal interference pattern that induced photo‐driven molecular migration within a solid‐state azobenzene thin film. This method enabled the fabrication of highly uniform sinusoidal gratings with an unprecedented pitch of ∼64.5 µm, with an average modulation depth of ∼100 nm. Through selective chemical dissolution of unexposed areas of the film, followed by gold sputtering and lift‐off, the micro‐sized surface reliefs were converted into a well‐defined array of gold microwires. Profilometry, scanning electron microscopy, and energy‐dispersive X‐ray spectroscopy analyses confirmed the surface periodicity, structural uniformity, and selective metal deposition. This fabrication method provides a scalable, alignment‐tolerant technique for creating customisable in‐plane photonic and electromagnetic components, such as wire‐grid polarisers and on‐chip micro‐antennas.

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Cite This Study

Bdour et al. (2026) studied this question.

synapsesocial.com/papers/6992652ceb1f82dc367a10cchttps://doi.org/10.1049/mna2.70017
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Also Consider

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  1. 1Continuous laser printing of surface relief microstructures on photomechanically-responsive azopolymer films using structured optical polarization2024 · 2 citations
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  4. 4A LIGA-like method for the fabrication of silicon-based x-ray absorption gratings2026
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