Polyfluorenylacetylene for near-infrared laser protection: Polymer synthesis, optical limiting mechanism and relationship between molecular structure and properties
10.1039/c7ra08499d
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sg-nus-scholar.10635-1739552023-11-01T08:08:05Z Polyfluorenylacetylene for near-infrared laser protection: Polymer synthesis, optical limiting mechanism and relationship between molecular structure and properties Zhao, G Feng, Y Guang, S Xu, H Lin, N Liu, X DEPT OF PHYSICS Chromophores Fourier transform infrared spectroscopy Infrared devices Infrared lasers Luminescence of organic solids Polyacetylenes Thallium alloys Two photon processes Electron delocalization Functional polyacetylenes Near-infrared lasers Optical limiting properties Structure and properties Structures and properties Terminal electron acceptors Two photon absorption Optical properties 10.1039/c7ra08499d RSC Advances 7 85 53785-53796 2020-09-02T06:40:31Z 2020-09-02T06:40:31Z 2017 Article Zhao, G, Feng, Y, Guang, S, Xu, H, Lin, N, Liu, X (2017). Polyfluorenylacetylene for near-infrared laser protection: Polymer synthesis, optical limiting mechanism and relationship between molecular structure and properties. RSC Advances 7 (85) : 53785-53796. ScholarBank@NUS Repository. https://doi.org/10.1039/c7ra08499d 20462069 https://scholarbank.nus.edu.sg/handle/10635/173955 Unpaywall 20200831 |
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Chromophores Fourier transform infrared spectroscopy Infrared devices Infrared lasers Luminescence of organic solids Polyacetylenes Thallium alloys Two photon processes Electron delocalization Functional polyacetylenes Near-infrared lasers Optical limiting properties Structure and properties Structures and properties Terminal electron acceptors Two photon absorption Optical properties |
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Chromophores Fourier transform infrared spectroscopy Infrared devices Infrared lasers Luminescence of organic solids Polyacetylenes Thallium alloys Two photon processes Electron delocalization Functional polyacetylenes Near-infrared lasers Optical limiting properties Structure and properties Structures and properties Terminal electron acceptors Two photon absorption Optical properties Zhao, G Feng, Y Guang, S Xu, H Lin, N Liu, X Polyfluorenylacetylene for near-infrared laser protection: Polymer synthesis, optical limiting mechanism and relationship between molecular structure and properties |
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10.1039/c7ra08499d |
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DEPT OF PHYSICS |
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DEPT OF PHYSICS Zhao, G Feng, Y Guang, S Xu, H Lin, N Liu, X |
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Article |
author |
Zhao, G Feng, Y Guang, S Xu, H Lin, N Liu, X |
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Zhao, G |
title |
Polyfluorenylacetylene for near-infrared laser protection: Polymer synthesis, optical limiting mechanism and relationship between molecular structure and properties |
title_short |
Polyfluorenylacetylene for near-infrared laser protection: Polymer synthesis, optical limiting mechanism and relationship between molecular structure and properties |
title_full |
Polyfluorenylacetylene for near-infrared laser protection: Polymer synthesis, optical limiting mechanism and relationship between molecular structure and properties |
title_fullStr |
Polyfluorenylacetylene for near-infrared laser protection: Polymer synthesis, optical limiting mechanism and relationship between molecular structure and properties |
title_full_unstemmed |
Polyfluorenylacetylene for near-infrared laser protection: Polymer synthesis, optical limiting mechanism and relationship between molecular structure and properties |
title_sort |
polyfluorenylacetylene for near-infrared laser protection: polymer synthesis, optical limiting mechanism and relationship between molecular structure and properties |
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2020 |
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https://scholarbank.nus.edu.sg/handle/10635/173955 |
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1781792179295879168 |