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An investigation of broadband optical nonlinear absorption and transient nonlinear refraction in a fluorenone-based compound

A novel fluorenone derivative, FO52, is designed and synthesized. The fluorenone group is introduced to provide the central π-conjugated system in the molecule and triphenylamine is substituted at both sides. Intramolecular Charge Transfer (ICT) from the terminal groups to the molecular center is co...

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Autores principales: Wu, Xingzhi, Xiao, Jinchong, Han, Yanbing, Xu, Jiabei, Zhou, Wenfa, Li, Yang, Fang, Yu, Chen, Yongqiang, Wu, Quanying, Song, Yinglin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9031121/
https://www.ncbi.nlm.nih.gov/pubmed/35481210
http://dx.doi.org/10.1039/d1ra01134k
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author Wu, Xingzhi
Xiao, Jinchong
Han, Yanbing
Xu, Jiabei
Zhou, Wenfa
Li, Yang
Fang, Yu
Chen, Yongqiang
Wu, Quanying
Song, Yinglin
author_facet Wu, Xingzhi
Xiao, Jinchong
Han, Yanbing
Xu, Jiabei
Zhou, Wenfa
Li, Yang
Fang, Yu
Chen, Yongqiang
Wu, Quanying
Song, Yinglin
author_sort Wu, Xingzhi
collection PubMed
description A novel fluorenone derivative, FO52, is designed and synthesized. The fluorenone group is introduced to provide the central π-conjugated system in the molecule and triphenylamine is substituted at both sides. Intramolecular Charge Transfer (ICT) from the terminal groups to the molecular center is confirmed via DFT calculations. Ultrafast optical nonlinearities are investigated via Z-scan and transient absorption spectroscopy (TAS) studies with a 190 fs laser. Reverse saturable absorption, two-photon induced excited-state absorption, and pure two-photon absorption are observed at 532 nm, 650 nm, and 800 nm, respectively. The different mechanisms at these wavelengths are discussed and interpreted with assistance from the results from TAS. Furthermore, strong excited-state refraction and ultrafast negative refraction from the bound electron response are resolved and discussed in phase object pump probe (POPP) experiments. The results suggest that the ICT-enhanced optical nonlinearities provide FO52 with strong optical limiting capabilities at visible wavelengths and ultrafast refraction with tiny attenuation in the near infrared region. The combination of these properties in one compound could be attractive for applications like laser protection and low-loss all-optical switching.
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spelling pubmed-90311212022-04-26 An investigation of broadband optical nonlinear absorption and transient nonlinear refraction in a fluorenone-based compound Wu, Xingzhi Xiao, Jinchong Han, Yanbing Xu, Jiabei Zhou, Wenfa Li, Yang Fang, Yu Chen, Yongqiang Wu, Quanying Song, Yinglin RSC Adv Chemistry A novel fluorenone derivative, FO52, is designed and synthesized. The fluorenone group is introduced to provide the central π-conjugated system in the molecule and triphenylamine is substituted at both sides. Intramolecular Charge Transfer (ICT) from the terminal groups to the molecular center is confirmed via DFT calculations. Ultrafast optical nonlinearities are investigated via Z-scan and transient absorption spectroscopy (TAS) studies with a 190 fs laser. Reverse saturable absorption, two-photon induced excited-state absorption, and pure two-photon absorption are observed at 532 nm, 650 nm, and 800 nm, respectively. The different mechanisms at these wavelengths are discussed and interpreted with assistance from the results from TAS. Furthermore, strong excited-state refraction and ultrafast negative refraction from the bound electron response are resolved and discussed in phase object pump probe (POPP) experiments. The results suggest that the ICT-enhanced optical nonlinearities provide FO52 with strong optical limiting capabilities at visible wavelengths and ultrafast refraction with tiny attenuation in the near infrared region. The combination of these properties in one compound could be attractive for applications like laser protection and low-loss all-optical switching. The Royal Society of Chemistry 2021-04-29 /pmc/articles/PMC9031121/ /pubmed/35481210 http://dx.doi.org/10.1039/d1ra01134k Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wu, Xingzhi
Xiao, Jinchong
Han, Yanbing
Xu, Jiabei
Zhou, Wenfa
Li, Yang
Fang, Yu
Chen, Yongqiang
Wu, Quanying
Song, Yinglin
An investigation of broadband optical nonlinear absorption and transient nonlinear refraction in a fluorenone-based compound
title An investigation of broadband optical nonlinear absorption and transient nonlinear refraction in a fluorenone-based compound
title_full An investigation of broadband optical nonlinear absorption and transient nonlinear refraction in a fluorenone-based compound
title_fullStr An investigation of broadband optical nonlinear absorption and transient nonlinear refraction in a fluorenone-based compound
title_full_unstemmed An investigation of broadband optical nonlinear absorption and transient nonlinear refraction in a fluorenone-based compound
title_short An investigation of broadband optical nonlinear absorption and transient nonlinear refraction in a fluorenone-based compound
title_sort investigation of broadband optical nonlinear absorption and transient nonlinear refraction in a fluorenone-based compound
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9031121/
https://www.ncbi.nlm.nih.gov/pubmed/35481210
http://dx.doi.org/10.1039/d1ra01134k
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