Localized Polymerization Using Single Photon Photoinitiators in Two-photon process for Fabricating Subwavelength Structures
Govind Ummethala, Arun Jaiswal, Raghvendra P Chaudhary, Suyog Hawal,, Sumit Saxena, Shobha Shukla

TL;DR
This paper demonstrates that using the inexpensive single photon photoinitiator LTPO-L with two-photon absorption enables subwavelength localized polymerization, allowing fabrication of complex nanostructures with high resolution.
Contribution
The study introduces a novel method utilizing LTPO-L for localized two-photon polymerization, achieving subwavelength resolution with a cost-effective and readily available initiator.
Findings
Achieved subwavelength polymerization using LTPO-L at 10wt% concentration.
Fabricated complex 2D/3D nanostructures with nanoscale resolution.
Resolution depends critically on LTPO-L concentration.
Abstract
Localized polymerization in subwavelength volumes using two photon dyes has now become a well-established method for fabrication of subwavelength structures. Unfortunately, the two photon absorption dyes used in such process are not only expensive but also proprietary. LTPO-L is an inexpensive, easily available single photon photoinitiator and has been used extensively for single photon absorption of UV light for polymerization. These polymerization volumes however are not localized and extend to micron size resolution having limited applications. We have exploited high quantum yield of radicals of LTPO-Lfor absorption of two photons to achieve localized polymerization in subwavelength volumes, much below the diffraction limit. Critical concentration (10wt%) of LTPO-Lin acrylate (Sartomer) was found optimal to achieve subwavelength localized polymerization and has been demonstrated by…
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