Steady-state spectroscopy and ultrafast dynamics of flavylium derivatives in the red and near-infrared spectral region

In an effort to enhance the absorption and fluorescence of flavylium in the red and near-infrared (NIR) spectral region, we synthesized a 2′-hydroxyflavylium derivative (FLV-OH) with a rigid electron donating julolidine group attached to position 7 and examined its ground and excited states spectros...

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Main Authors: Ismail, Ahmed H., Khyasudeen, M. Faisal, Husband, John, Baqi, Younis, Abou-Zied, Osama K.
Other Authors: Asian Spectroscopy Conference 2020
Format: Conference Paper
Language:English
Published: 2020
Subjects:
Online Access:https://hdl.handle.net/10356/144254
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author Ismail, Ahmed H.
Khyasudeen, M. Faisal
Husband, John
Baqi, Younis
Abou-Zied, Osama K.
author2 Asian Spectroscopy Conference 2020
author_facet Asian Spectroscopy Conference 2020
Ismail, Ahmed H.
Khyasudeen, M. Faisal
Husband, John
Baqi, Younis
Abou-Zied, Osama K.
author_sort Ismail, Ahmed H.
collection NTU
description In an effort to enhance the absorption and fluorescence of flavylium in the red and near-infrared (NIR) spectral region, we synthesized a 2′-hydroxyflavylium derivative (FLV-OH) with a rigid electron donating julolidine group attached to position 7 and examined its ground and excited states spectroscopy by absorption, fluorescence, ultrafast dynamics, and by density functional theory (DFT). The current results indicate that FLV-OH has spectroscopic properties that make it suitable for many applications such as a potential light harvesting dye in solar cell.
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spelling ntu-10356/1442542020-10-29T20:12:52Z Steady-state spectroscopy and ultrafast dynamics of flavylium derivatives in the red and near-infrared spectral region Ismail, Ahmed H. Khyasudeen, M. Faisal Husband, John Baqi, Younis Abou-Zied, Osama K. Asian Spectroscopy Conference 2020 Institute of Advanced Studies Science::Chemistry Flavylium Near-infrared In an effort to enhance the absorption and fluorescence of flavylium in the red and near-infrared (NIR) spectral region, we synthesized a 2′-hydroxyflavylium derivative (FLV-OH) with a rigid electron donating julolidine group attached to position 7 and examined its ground and excited states spectroscopy by absorption, fluorescence, ultrafast dynamics, and by density functional theory (DFT). The current results indicate that FLV-OH has spectroscopic properties that make it suitable for many applications such as a potential light harvesting dye in solar cell. Published version 2020-10-23T05:44:01Z 2020-10-23T05:44:01Z 2020 Conference Paper Ismail, A. H., Khyasudeen, M. F., Husband, J., Baqi, Y., & Abou-Zied, O. K. (2020). Steady-state spectroscopy and ultrafast dynamics of flavylium derivatives in the red and near-infrared spectral region. Proc. Of the 7th Asian Spectroscopy Conference (ASC 2020). doi:10.32655/ASC_8-10_Dec2020.26 https://hdl.handle.net/10356/144254 10.32655/ASC_8-10_Dec2020.26 en © 2020 Nanyang Technological University. application/pdf
spellingShingle Science::Chemistry
Flavylium
Near-infrared
Ismail, Ahmed H.
Khyasudeen, M. Faisal
Husband, John
Baqi, Younis
Abou-Zied, Osama K.
Steady-state spectroscopy and ultrafast dynamics of flavylium derivatives in the red and near-infrared spectral region
title Steady-state spectroscopy and ultrafast dynamics of flavylium derivatives in the red and near-infrared spectral region
title_full Steady-state spectroscopy and ultrafast dynamics of flavylium derivatives in the red and near-infrared spectral region
title_fullStr Steady-state spectroscopy and ultrafast dynamics of flavylium derivatives in the red and near-infrared spectral region
title_full_unstemmed Steady-state spectroscopy and ultrafast dynamics of flavylium derivatives in the red and near-infrared spectral region
title_short Steady-state spectroscopy and ultrafast dynamics of flavylium derivatives in the red and near-infrared spectral region
title_sort steady state spectroscopy and ultrafast dynamics of flavylium derivatives in the red and near infrared spectral region
topic Science::Chemistry
Flavylium
Near-infrared
url https://hdl.handle.net/10356/144254
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