Femtosecond Laser Densification of Hydrogels to Generate Customized Volume Diffractive Gratings

飞秒激光致密化水凝胶以生成定制体积衍射光栅

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作者:Zheng Xiong, Arun Poudel, Ameya R Narkar, Zhe Zhang, Puskal Kunwar, James H Henderson, Pranav Soman

Abstract

Inspired by nature's ability to shape soft biological materials to exhibit a range of optical functionalities, we report femtosecond (fs) laser-induced densification as a new method to generate volume or subsurface diffractive gratings within ordinary hydrogel materials. We characterize the processing range in terms of fs laser power, speed, and penetration depths for achieving densification within poly(ethylene glycol) diacrylate (PEGDA) hydrogel and characterize the associated change in local refractive index (RI). The RI change facilitates the fabrication of custom volume gratings (parallel line, grid, square, and ring gratings) within PEGDA. To demonstrate this method's broad applicability, fs laser densification was used to generate line gratings within the phenylboronic acid (PBA) hydrogel, which is known to be responsive to changes in pH. In the future, this technique can be used to convert ordinary hydrogels into multicomponent biophotonic systems.

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