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Photoluminescence Quenching of a Novel Electroconductive Poly(propylene thiophenoimine)-co-Poly(ethylenedioxy thiophene) Star Copolymer

A generation 1 poly(propylene thiophenoimine)-co-poly(ethylenedioxy thiophene) (G1PPT-co-PEDOT) star copolymer, which exhibits a strong optical absorption over a broad range in the ultraviolet–visible (UV-Vis) region and with good electro/conductive properties, was chemically prepared for the first...

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Autores principales: Djoumessi Yonkeu, Anne Lutgarde, Ndipingwi, Miranda Mengwi, Ikpo, Chinwe, Nwambaekwe, Kelechi, Yussuf, Sodiq, Tesfay, Hayelom, Iwuoha, Emmanuel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7761644/
https://www.ncbi.nlm.nih.gov/pubmed/33287182
http://dx.doi.org/10.3390/polym12122894
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author Djoumessi Yonkeu, Anne Lutgarde
Ndipingwi, Miranda Mengwi
Ikpo, Chinwe
Nwambaekwe, Kelechi
Yussuf, Sodiq
Tesfay, Hayelom
Iwuoha, Emmanuel
author_facet Djoumessi Yonkeu, Anne Lutgarde
Ndipingwi, Miranda Mengwi
Ikpo, Chinwe
Nwambaekwe, Kelechi
Yussuf, Sodiq
Tesfay, Hayelom
Iwuoha, Emmanuel
author_sort Djoumessi Yonkeu, Anne Lutgarde
collection PubMed
description A generation 1 poly(propylene thiophenoimine)-co-poly(ethylenedioxy thiophene) (G1PPT-co-PEDOT) star copolymer, which exhibits a strong optical absorption over a broad range in the ultraviolet–visible (UV-Vis) region and with good electro/conductive properties, was chemically prepared for the first time. Synthesis of the star copolymer, G1PPT-co-PEDOT was confirmed by spectroscopic studies. Indeed, the disappearance of the very high intensity bands, C–H bending at α-position (687 cm(−1)), and C=N stretching (1620 cm(−1)) in the Fourier transform infrared spectroscopy (FTIR) of G1PPT-co-PEDOT, which were initially present in the spectrum of the thiolated starting material, G1PPT, confirmed copolymerization. Furthermore, a large bathochromic shift in the onset wavelength of the UV-Vis absorbance spectra from 367 nm in G1PPT to 674 nm in G1PPT-co-PEDOT further attests of successful copolymerization. The electrochemical analysis of G1PPT-co-PEDOT achieved a highest occupied molecular orbital (HOMO) energy level value of 5.3 eV, which is reminiscent of the value for an ideal electron-donor material. Photoluminescence quenching of up to 82% was observed in solution blends of the G1PPT-co-PEDOT star copolymer and N,N′-diisopropyl naphthalene diimide (NDI). This demonstrates the occurrence of photoinduced intermolecular charge transfer (PICT) from the electron-donating G1PPT-co-PEDOT to the electron accepting NDI, a good property, beneficial for optoelectronic and photovoltaic applications.
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spelling pubmed-77616442020-12-26 Photoluminescence Quenching of a Novel Electroconductive Poly(propylene thiophenoimine)-co-Poly(ethylenedioxy thiophene) Star Copolymer Djoumessi Yonkeu, Anne Lutgarde Ndipingwi, Miranda Mengwi Ikpo, Chinwe Nwambaekwe, Kelechi Yussuf, Sodiq Tesfay, Hayelom Iwuoha, Emmanuel Polymers (Basel) Article A generation 1 poly(propylene thiophenoimine)-co-poly(ethylenedioxy thiophene) (G1PPT-co-PEDOT) star copolymer, which exhibits a strong optical absorption over a broad range in the ultraviolet–visible (UV-Vis) region and with good electro/conductive properties, was chemically prepared for the first time. Synthesis of the star copolymer, G1PPT-co-PEDOT was confirmed by spectroscopic studies. Indeed, the disappearance of the very high intensity bands, C–H bending at α-position (687 cm(−1)), and C=N stretching (1620 cm(−1)) in the Fourier transform infrared spectroscopy (FTIR) of G1PPT-co-PEDOT, which were initially present in the spectrum of the thiolated starting material, G1PPT, confirmed copolymerization. Furthermore, a large bathochromic shift in the onset wavelength of the UV-Vis absorbance spectra from 367 nm in G1PPT to 674 nm in G1PPT-co-PEDOT further attests of successful copolymerization. The electrochemical analysis of G1PPT-co-PEDOT achieved a highest occupied molecular orbital (HOMO) energy level value of 5.3 eV, which is reminiscent of the value for an ideal electron-donor material. Photoluminescence quenching of up to 82% was observed in solution blends of the G1PPT-co-PEDOT star copolymer and N,N′-diisopropyl naphthalene diimide (NDI). This demonstrates the occurrence of photoinduced intermolecular charge transfer (PICT) from the electron-donating G1PPT-co-PEDOT to the electron accepting NDI, a good property, beneficial for optoelectronic and photovoltaic applications. MDPI 2020-12-03 /pmc/articles/PMC7761644/ /pubmed/33287182 http://dx.doi.org/10.3390/polym12122894 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Djoumessi Yonkeu, Anne Lutgarde
Ndipingwi, Miranda Mengwi
Ikpo, Chinwe
Nwambaekwe, Kelechi
Yussuf, Sodiq
Tesfay, Hayelom
Iwuoha, Emmanuel
Photoluminescence Quenching of a Novel Electroconductive Poly(propylene thiophenoimine)-co-Poly(ethylenedioxy thiophene) Star Copolymer
title Photoluminescence Quenching of a Novel Electroconductive Poly(propylene thiophenoimine)-co-Poly(ethylenedioxy thiophene) Star Copolymer
title_full Photoluminescence Quenching of a Novel Electroconductive Poly(propylene thiophenoimine)-co-Poly(ethylenedioxy thiophene) Star Copolymer
title_fullStr Photoluminescence Quenching of a Novel Electroconductive Poly(propylene thiophenoimine)-co-Poly(ethylenedioxy thiophene) Star Copolymer
title_full_unstemmed Photoluminescence Quenching of a Novel Electroconductive Poly(propylene thiophenoimine)-co-Poly(ethylenedioxy thiophene) Star Copolymer
title_short Photoluminescence Quenching of a Novel Electroconductive Poly(propylene thiophenoimine)-co-Poly(ethylenedioxy thiophene) Star Copolymer
title_sort photoluminescence quenching of a novel electroconductive poly(propylene thiophenoimine)-co-poly(ethylenedioxy thiophene) star copolymer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7761644/
https://www.ncbi.nlm.nih.gov/pubmed/33287182
http://dx.doi.org/10.3390/polym12122894
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