Paper
16 December 2004 Multibranched and dendritic organic materials with high two-photon absorption activity
Seung-Wan Kang, Joo Yeon Kim, Ran Hee Kim, Bong-Keun So, Kwang-Sup Lee, In-Wook Hwang, Dongho Kim, Paul A. Fleitz, Hong-Bo Sun, Satoshi Kawata
Author Affiliations +
Proceedings Volume 5621, Optical Materials in Defence Systems Technology; (2004) https://doi.org/10.1117/12.582709
Event: European Symposium on Optics and Photonics for Defence and Security, 2004, London, United Kingdom
Abstract
A three-dimensional micro-object was fabricated by two-photon initiated photopolymerization (TPIP) of soft-resin with the efficient two-photon absorbing multi-branched chromophore, EPS-3arm, which possesses high two-photon absorption cross-section of 5.21×10-47 cm4s/photons at 700 nm. The structural stability of the fabricated micro-objects could be achieved with aid of sol-gel process. The two-photon absorbing stilbazolium-cored dendrimer was also synthesized. The stillbazolium chromophore was covalently linked with the dendrimer chains so as to restrict free conformation motion. The hindered molecular twisting motion of the stilbazolium dye within the dendrimer is responsible for 5 to 16 times of enhancement in fluorescence emission along with the increased emission lifetime. The steady-state and time-resolved fluorescence emission study of the solid-state film indicate an efficient site-isolation and restriction of conformation motion of the active two-photon chromophore.
© (2004) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Seung-Wan Kang, Joo Yeon Kim, Ran Hee Kim, Bong-Keun So, Kwang-Sup Lee, In-Wook Hwang, Dongho Kim, Paul A. Fleitz, Hong-Bo Sun, and Satoshi Kawata "Multibranched and dendritic organic materials with high two-photon absorption activity", Proc. SPIE 5621, Optical Materials in Defence Systems Technology, (16 December 2004); https://doi.org/10.1117/12.582709
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KEYWORDS
Chromophores

Luminescence

Absorption

Dendrimers

Sol-gels

Picosecond phenomena

Molecules

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