The short wave near-infrared fluorescence properties of two p-azaquinodimethane (p-AQM)-based conjugated polymers

The absorption, scattering, and autofluorescence of biological tissues in short-wave infrared region (SWIR, 900–1700nm) are relatively low, so SWIR fluorescence usually has deeper penetration into living tissues, and can show a higher signal-to-noise ratio when used for imaging in vivo. However, the...

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Main Authors: Yaowei Zhu, Yawei Miao, Tingting Xue, Youchang Liu, Chunying Zheng, Jiping Ma, Weiqiang Tan, Shuguang Wen, Chuantao Gu
Format: Article
Language:English
Published: World Scientific Publishing 2020-09-01
Series:Journal of Innovative Optical Health Sciences
Subjects:
Online Access:http://www.worldscientific.com/doi/pdf/10.1142/S1793545820410035
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spelling doaj-6925014eae1546e19fd29290daebde242020-11-25T02:33:03ZengWorld Scientific PublishingJournal of Innovative Optical Health Sciences1793-54581793-72052020-09-011352041003-12041003-910.1142/S179354582041003510.1142/S1793545820410035The short wave near-infrared fluorescence properties of two p-azaquinodimethane (p-AQM)-based conjugated polymersYaowei Zhu0Yawei Miao1Tingting Xue2Youchang Liu3Chunying Zheng4Jiping Ma5Weiqiang Tan6Shuguang Wen7Chuantao Gu8School of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao 266580, P. R. ChinaSchool of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao 266580, P. R. ChinaChina United Test & Evaluation (Qingdao) Co., Ltd., Qingdao 266011, P. R. ChinaQingdao Institute of Textile Fibre Supervision and Inspection, Qingdao 266061, P. R. ChinaSchool of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao 266580, P. R. ChinaSchool of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao 266580, P. R. ChinaSchool of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao 266580, P. R. ChinaCAS Key Laboratory of Biobased Materials, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, P. R. ChinaSchool of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao 266580, P. R. ChinaThe absorption, scattering, and autofluorescence of biological tissues in short-wave infrared region (SWIR, 900–1700nm) are relatively low, so SWIR fluorescence usually has deeper penetration into living tissues, and can show a higher signal-to-noise ratio when used for imaging in vivo. However, there are few types of organic SWIR fluorescent materials currently. In this work, p-azaquinodimethane (p-AQM) with a quinoid structure is used as the acceptor unit, and carbazole or fluorene with sp3 hybridization are used as the donor units, two conjugated polymers were synthesized. The quinone structure is conducive to the redshift of absorption and fluorescence spectra, and the sp3 hybridization structure is conducive to weakening the aggregation quenching of polymer fluorescence. PF and PCz exhibited absorption peaks of 492nm and 508nm, respectively. The emission peaks of the two polymers are 920nm and 950nm, respectively, both in the short-wave near infrared region. The quantum yield (QY) of PF and PCz is 0.4% and 0.3%, respectively.http://www.worldscientific.com/doi/pdf/10.1142/S1793545820410035short-wave infrared regionfluorescencep-azaquinodimethaneconjugated polymers
collection DOAJ
language English
format Article
sources DOAJ
author Yaowei Zhu
Yawei Miao
Tingting Xue
Youchang Liu
Chunying Zheng
Jiping Ma
Weiqiang Tan
Shuguang Wen
Chuantao Gu
spellingShingle Yaowei Zhu
Yawei Miao
Tingting Xue
Youchang Liu
Chunying Zheng
Jiping Ma
Weiqiang Tan
Shuguang Wen
Chuantao Gu
The short wave near-infrared fluorescence properties of two p-azaquinodimethane (p-AQM)-based conjugated polymers
Journal of Innovative Optical Health Sciences
short-wave infrared region
fluorescence
p-azaquinodimethane
conjugated polymers
author_facet Yaowei Zhu
Yawei Miao
Tingting Xue
Youchang Liu
Chunying Zheng
Jiping Ma
Weiqiang Tan
Shuguang Wen
Chuantao Gu
author_sort Yaowei Zhu
title The short wave near-infrared fluorescence properties of two p-azaquinodimethane (p-AQM)-based conjugated polymers
title_short The short wave near-infrared fluorescence properties of two p-azaquinodimethane (p-AQM)-based conjugated polymers
title_full The short wave near-infrared fluorescence properties of two p-azaquinodimethane (p-AQM)-based conjugated polymers
title_fullStr The short wave near-infrared fluorescence properties of two p-azaquinodimethane (p-AQM)-based conjugated polymers
title_full_unstemmed The short wave near-infrared fluorescence properties of two p-azaquinodimethane (p-AQM)-based conjugated polymers
title_sort short wave near-infrared fluorescence properties of two p-azaquinodimethane (p-aqm)-based conjugated polymers
publisher World Scientific Publishing
series Journal of Innovative Optical Health Sciences
issn 1793-5458
1793-7205
publishDate 2020-09-01
description The absorption, scattering, and autofluorescence of biological tissues in short-wave infrared region (SWIR, 900–1700nm) are relatively low, so SWIR fluorescence usually has deeper penetration into living tissues, and can show a higher signal-to-noise ratio when used for imaging in vivo. However, there are few types of organic SWIR fluorescent materials currently. In this work, p-azaquinodimethane (p-AQM) with a quinoid structure is used as the acceptor unit, and carbazole or fluorene with sp3 hybridization are used as the donor units, two conjugated polymers were synthesized. The quinone structure is conducive to the redshift of absorption and fluorescence spectra, and the sp3 hybridization structure is conducive to weakening the aggregation quenching of polymer fluorescence. PF and PCz exhibited absorption peaks of 492nm and 508nm, respectively. The emission peaks of the two polymers are 920nm and 950nm, respectively, both in the short-wave near infrared region. The quantum yield (QY) of PF and PCz is 0.4% and 0.3%, respectively.
topic short-wave infrared region
fluorescence
p-azaquinodimethane
conjugated polymers
url http://www.worldscientific.com/doi/pdf/10.1142/S1793545820410035
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