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April 16, 2026Polymers0 citationsOpen Access

Aromatic Tricyanoethylenes a New Class of ‘Compact’ Photoinitiators for One- and Two-Photon Photopolymerization

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EZE. R. ZhiganshinaTLT. S. LyubovaATAnastasia E. Tarakanova

Key Points

  • To explore new compact photoinitiators for one- and two-photon photopolymerization and their applications.
  • Synthesis of A-π-D photoinitiators with donor aromatic fragments and tricyanoethylene.
  • Photopolymerization experiments using LED and laser light at specific wavelengths.
  • EPR spectroscopy analysis to investigate photoinitiation mechanisms.
  • Testing biocompatibility of the resulting polymers using MTT assays.
  • ArTCNEs effectively initiated one- and two-photon photopolymerization.
  • The best performing composition showed a polymerization threshold of 2 mW.
  • 3D structures with fine resolution of 80 nm and 400 nm were achieved.
  • MTT assays indicated promising biocompatibility for the polymers.

Abstract

In this paper, we consider a series of new compact A-π-D photoinitiators consisting of donor aromatic fragments (naphthalene, anthracene, phenanthrene, pyrene and perylene) and a strong acceptor tricyanoethylene group—aryltricyanoethylenes (ArTCNEs). Spectral, photophysical, and electrochemical characteristics of ArTCNEs are studied. One-photon (with LED@405 nm) and two-photon (λ = 780 nm, impulse duration of 100 fs) photopolymerization of PETA can be effectively initiated by ArTCNEs with the tertiary amine N,N-dimethylcyclohexylamine DMCHA and/or the iodonium salt diphenyliodonium chloride Iod. Based on results of experiments on photodegradation, photopolymerization and EPR spectroscopy, a photoinitiation mechanism of radical photopolymerization was proposed for two-component (AntTCNE/DMCHA) and three-component (AntTCNE/DMCHA/Iod) initiating systems. The composition containing PerTCNE/DMCHA as a photoinitiator demonstrated the best reactivity under two-photon nanolithography conditions: the polymerization threshold was 2 mW at a laser beam scanning speed of 100 μm/s, and the widest fabrication window of 11 mW was typical for it. As an example, 3D “cage” structures were fabricated using the AntTCNE-based composition, and the test structure resolution parameters, such as the minimum line width and the distance between lines of 80 and 400 nm, respectively, were achieved. MTT experiments with human dermal fibroblasts showed promising preliminary biocompatibility of the resulting polymers, which opens up possibilities for using the obtained materials in biological applications.

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Cite This Study

Zhiganshina et al. (2026) studied this question.

synapsesocial.com/papers/69e07e582f7e8953b7cbf58chttps://doi.org/10.3390/polym18080958
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